79
References Abbasi, S.A. (1997). Wetlands of India, Ecology and Threats, Discovery Publishing House, New Delhi. Vol-II, pp.151. Abdel-Baky, J.M. (2001). Effect of some wastes on the algal biodiversity in the delta region of the river Nile. M.Sc. Thesis. Bot. Dept. Fac. of Science, Mansoura Univ., Egypt. Abdel-Satar, A.M. (2005). Water quality of river Nile from Idfo to Cairo, Egyptian J. Aqua. Res., 31 (2): 200- 223. Abdo, M.H. (2004). Environmental studies on the River Nile at Damietta branch region, Egypt. J. Egypt Dordrech. Acad. Soc. Environ. Develop. (D-Environmental Studies), 5: 85-104. Abdo, M.H. (2005). Physico-chemical characteristics of Abu Za'baal Ponds, Egypt Egyptian J. Aqua. Res., 31: 1-15 Abd El-Karim, M.S. (2009). Present and long-term changes of phytoplankton communities in hypertrophic Mediterranean Lagoon, Lake Manzala, Egypt. American-Eurasian J. Agric. Environ. Sci., 5 (2): 171- 178. Abdul-Razak, A., Asiedu, A.B., Entsua-Mensah, R.E.M. and K.A.A. (2009): Assessment of the Water Quality of the Oti River in Ghana. West African. J. Appl. Ecol., 15. Abel, P.D. (1996). Water Pollution Biology. 2 nd Edn. Taylor and Francis Ltd., pp. 286. Abowei, J.F.N. and George, A.D.I. (2009). Some physical and chemical characteristics in Okpoka creek, Niger Delta. Res. J. Environ. Earth Sci., 1 (2): 45-53. Abrentes, N., Antunes, S., Pereira, M. and Goncalves, M. (2006). Seasonal succession of cladocerans and phytoplankton and their interactions in a shallow eutrophic lake (Lake Vela, Portugal). Acta Oecologica, 29: 5464. Abolude, D.S., Davies, O.A. and Chia, A.M. (2009). Distribution and Concentration of Trace Elements in Kubanni Reservoir in Northern Nigeria. Res. J. Environ. Earth Sci., 1 (2): 39-44. Acharjee, B. (1997). Ecological studies and productive potential of some beels in lower Brahmaputra basin, Assam, Ph.D. Thesis, Gauhati University, Guwahati Acharjee, B., Dutta, A., Choudhury, M. and Pathak, V. (1995). Phytoplankton species diversity indices in Dighali beel, Assam, India. Environ. Ecol., 13: 660 -662. Acharjee, B., Dutta, A. and Choudhury, M. (1999). Role of physico-chemical parameters in the evolution of productivity of Dighali beel, Assam, Environ. Ecol., 17 (2): 274-279. Adakole, J.A., Abulode, D.S. and Balarabe, M.L. (2008). Assessment of water quality of a man-made lake in Zaria, Nigeria. In: Sengupta, M. and Dalwani, R. (Eds.). Proceedings of Taal 2007: The 12 th World Lake Conference. pp. 1373-1382. Adebisi, A.A. (1981). The physico-chemical hydrology of a tropical seasonal River-Upper Ogun River, Hydrobiol., 79: 157-165 Abd El-Karim, M.S. (2009). Present and long-term changes of phytoplankton communities in hypertrophic Mediterranean Lagoon, Lake Manzala, Egypt. American-Eurasian J. Agric. Environ. Sci., 5 (2): 171- 178.

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References

Abbasi, S.A. (1997). Wetlands of India, Ecology and Threats, Discovery Publishing House, New Delhi. Vol-II,pp.151.

Abdel-Baky, J.M. (2001). Effect of some wastes on the algal biodiversity in the delta region of the river Nile.M.Sc. Thesis. Bot. Dept. Fac. of Science, Mansoura Univ., Egypt.

Abdel-Satar, A.M. (2005). Water quality of river Nile from Idfo to Cairo, Egyptian J. Aqua. Res., 31 (2): 200-223.

Abdo, M.H. (2004). Environmental studies on the River Nile at Damietta branch region, Egypt. J. EgyptDordrech. Acad. Soc. Environ. Develop. (D-Environmental Studies), 5: 85-104.

Abdo, M.H. (2005). Physico-chemical characteristics of Abu Za'baal Ponds, Egypt Egyptian J. Aqua. Res., 31:1-15

Abd El-Karim, M.S. (2009). Present and long-term changes of phytoplankton communities in hypertrophicMediterranean Lagoon, Lake Manzala, Egypt. American-Eurasian J. Agric. Environ. Sci., 5 (2): 171-178.

Abdul-Razak, A., Asiedu, A.B., Entsua-Mensah, R.E.M. and K.A.A. (2009): Assessment of the Water Qualityof the Oti River in Ghana. West African. J. Appl. Ecol., 15.

Abel, P.D. (1996). Water Pollution Biology. 2nd Edn. Taylor and Francis Ltd., pp. 286.

Abowei, J.F.N. and George, A.D.I. (2009). Some physical and chemical characteristics in Okpoka creek, NigerDelta. Res. J. Environ. Earth Sci., 1 (2): 45-53.

Abrentes, N., Antunes, S., Pereira, M. and Goncalves, M. (2006). Seasonal succession of cladocerans andphytoplankton and their interactions in a shallow eutrophic lake (Lake Vela, Portugal). ActaOecologica, 29: 54–64.

Abolude, D.S., Davies, O.A. and Chia, A.M. (2009). Distribution and Concentration of Trace Elements inKubanni Reservoir in Northern Nigeria. Res. J. Environ. Earth Sci., 1 (2): 39-44.

Acharjee, B. (1997). Ecological studies and productive potential of some beels in lower Brahmaputra basin,Assam, Ph.D. Thesis, Gauhati University, Guwahati

Acharjee, B., Dutta, A., Choudhury, M. and Pathak, V. (1995). Phytoplankton species diversity indices inDighali beel, Assam, India. Environ. Ecol., 13: 660 -662.

Acharjee, B., Dutta, A. and Choudhury, M. (1999). Role of physico-chemical parameters in the evolution ofproductivity of Dighali beel, Assam, Environ. Ecol., 17 (2): 274-279.

Adakole, J.A., Abulode, D.S. and Balarabe, M.L. (2008). Assessment of water quality of a man-made lake inZaria, Nigeria. In: Sengupta, M. and Dalwani, R. (Eds.). Proceedings of Taal 2007: The 12th WorldLake Conference. pp. 1373-1382.

Adebisi, A.A. (1981). The physico-chemical hydrology of a tropical seasonal River-Upper Ogun River,Hydrobiol., 79: 157-165

Abd El-Karim, M.S. (2009). Present and long-term changes of phytoplankton communities in hypertrophicMediterranean Lagoon, Lake Manzala, Egypt. American-Eurasian J. Agric. Environ. Sci., 5 (2): 171-178.

Page 2: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Abdel Aziz, N.E. and Aboul Ezz, S.M. (2004). The Structure of zooplankton community in Lake Maryout,Alexandria, Egypt. Egyptian J. Aquat. Res., 30: 160-170.

Adefemi, O.S., Olaofe, O. and Asaolu, S.S. (2007). Seasonal variation in heavy metal distribution in thesediment of major dams in Ekiti-State. Pak. J. Nut., 6: 705-707.

Adejare, L.I., James, B.K. and Shelle, R.O. (2011). Hydrochemistry and levels of some heavy metals in samplesof Ibeshe, Lagos Lagoon Complex, Nigeria. J. Amer. Sci., 7 (1): 625-632.

Adeogun, O.A., Fafioye, O.O., Olaleye, B.A. and Ngobili, G.O. (2004). The relationship between somephysicochemical parameters and plankton composition on fish production in ponds. Proc. 19

thFish.

Soc. Nigeria (FISON), Lagos, Nigeria. pp. 424 - 428.

Adeyemo, O.K., Adedokun, O.A., Yusuf, R.K. and Adeleye, E.A. (2008). Seasonal changes in physico-chemical parameters and nutrient load of river sediments in Ibadan city, Nigeria. Global NEST J., 10(3): 326-336.

Adoni, A., Joshi, D.G., Gosh, K. Chourasia, S.K., Vaishya, A.K., Yadav, M. and H.G. Verma (1985). WorkBook on Limnology. Pratibha Publisher, Sagar, pp. 1-166.

Agarwal, N.K. and Thapliyal, B.L. (2005). Preimpoundment hydrological study of Bhilangana River from TehriDam reservoir area in Uttaranchal. Environ. Geochem., 8: 143-148.

Aghimiem, A.E., Udo, E. and Ataga, D.O. (1985). The characteristics and nutrient status of some hydromorphicsoils supporting Raphia palms in Southern Nigeria. J. Nigeria. Ins. Oil Palm Res., VII: 56-75.

Agostinho, A.A. and Zalewski, M. (1995). The dependence of fish community structure and dynamics onfloodplain riparian ecotone zone in Parana´ River, Brazil. Hydrobiol., 303: 141–148.

Agostinho, A.A., Thomaz, S.M., Minte-Vera, C.V. and Winemiller, K.O. (2001). Biodiversity of the ParanaRiver floodplain. In: Gopal, B., Junk, W.J., Davis, J.A. (Eds.) Biodiversity in wetlands: assessment,function and conservation, Vol. 1. Backhuys Publishers, Leiden, pp. 89–118.

Aguigwo, J.N. (1998). Studies on the physical-chemical parameters and plankton productivity of productivestreams, J. Aqua. Sci., 19-23.

Ahearn, D.S., Viers, J.H., Mount, J.F. AND Dahlgren, R.A. (2006). Priming the productivity pump: flood pulsedriven trends in suspended algal biomass distribution across a restored floodplain. Freshwater Biol.,51: 1417–1433, DOI:10.1111/j.1365-2427.2006.01580.x

Ahmad, A.K., Mushrifah, I. and Shuhaimi-Othman, M. (2009). Water quality and heavy metal concentrations insediment of Sungai Kelantan, Kelantan, Malaysia: A baseline study. Sains Malaysiana, 38 (4): 435–442.

Ahmad, S.H. and Singh, A.K. (1993). Diurnal variations in physico-chemical factors and zooplankton in thesurface niche of a perennial tank of Patna (Bihar), India. J. Ecobiol., 5: 111-120.

Ahmad, M.S. (1996). Ecological survey of some algal flora of polluted habitats of Dharbhanga. J. Environ. Poll., 3 (3-4): 147-151.

Ahmed, A. (2004). Ecological studies of the river Padma at Mawa Ghat, Munshiganj I. Physico-chemicalproperties, Pak. J. Biol. Sci., 7 (1): 1865-1869.

Ahn, Y.S., Nakamura, F. and Mizugaki, S. (2008). Hydrology, suspended sediment dynamics and nutrientloading in Lake Takkobu, a degrading lake ecosystem in Kushiro Mire, northern Japan. Environ.Monit. Assess., 145: 267–281, DOI: 10.1007/s10661-007-0036-1.

Page 3: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Aka, M., Pagano, N., Saint-Jean, L., Arfi, R., Bouvy, M., Cecchi, P., Corbin, D. and Thomas, S. (2000).Zooplankton variability in 49 shallow tropical reservoirs of Ivory Coast (West Africa). InternationaleRev. Hydrobiol., 85: 439–504.

Akoma, O.C. (2008). Phytoplankton and Nutrient Dynamics of a Tropical Estuarine System, Imo River Estuary,Nigeria. African Res. Rev., 2 (2): 253-264.

Akpan, E.R. (1991). Seasonal variation in Phytoplankton biomass and Pigments in relation to water quality inthe Cross River System. Ph.D. Thesis, University of Calabar, pp. 179.

Akpan, E.R. and Offem, J.O. (1993). Seasonal variation in water quality of the Cross River, Nigeria. Rev.Hydrobiol. Trop., 26 (2): 95-103.

Akpan, A.W. (1994). Total hydrocarbon, polycyclic-aromatic hydrocarbon and other organic pollutants in thecoastal soils, sediments and water in Qua Iboe River Estuary. 21st Ann. Conf. Soil Sci. Soc. Nigeria,University of Uyo, 30th January- 4th February, 1994.

Akpan, A.W. (2004). The water quality of some tropical fresh water bodies in Uyo (Nigeria) receivingmunicipal effluents, slaughterhouse washings and agricultural land drainage. The Environmentalist, 24:49-50.

Aksoy, A., Sahin, U. and Duman, F. (2000). Robinia pseudo-acacia L. as a possible biomonitor of heavy metalpollution in Kayseri. Turkish J. Bot., 24: 279-284.

Alabaster, J.S. and Lloyd, R. (1980). Water quality criteria for freshwater fish. Butterworths, London.

Alabaster, J.S. and Lloyds, R. (1982). Water quality criteria for freshwater fish. 2nd Edn. Butterworthspublication, London, pp. 361.

Alagarsamy, R. (1991). Distribution and seasonal variation of trace metals in surface sediments of the MandoviEstuary, West Coast of India. Estuar. Coast. Shelf Sci., 67 (333): 1-15

Alam, S.M.M., Moslehuddin, A.Z.M, Islam, M.R. and Egashira, K. (2007). Some chemical properties of soilsfrom two agroecological regions of Bangladesh: Region 5 – Lower Atrai Basin and Region 6 – LowerPurnabhaba Floodplain. J. Fac. Agr., Kyushu Univ., 52 (1): 195–202.

Albrecht, S.L. and Rasmussen, P.E. (1995). Soil quality and soil organic matter. In: Columbia BasinAgricultural Research Annual Report. Spec. Rpt. 946. Oregon State University in cooperation withUSDA-Agricultural Research Service, Pendleton, OR. pp. 101-104.

Alhonen, P. (1970). On the significance of the planktonic/ littoral ratios in the cladoceran stratigraphy of lakesediments. Soc. Sci. Fenn. Comm. Biol., 35: 1-9.

Alp, M.T., Kocer, M.A.T., Sen, B. and Ozbay, O. (2010). Water quality of surface waters in Lower EuphratesBasin (Southeaster Anatolia, Turkey). J. Ani. Vet. Adv., 9 (18): 2412-2421

Allan, J.D. (1976). Life history patterns in zooplankton. Amer. Natur., 110: 165-180.

Allan, J.D. (1995). Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers.Dordrecht, Netherlands.

Allan, J.D. (2001). Stream Ecology. Structure and function of running waters. School of Natural Resources andEnvironment, University of Michigan, USA. Kluwer Acadamic Publishers.

Alansi, A.W., Amin, M.S.M., Abdul, H.G., Shafri, H.Z.M., Thamer, A.M., Waleed, A.R.M., Aimrun, W. andEzrin, M.H. (2009). The effect of development and land use change on rainfall-runoff and runoff-

Page 4: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

sediment relationships under humid tropical condition: Case study of Bernam watershed Malaysia;European J. Sci. Res., 31 (1): 88–105.

Allen, M.B. (1952). The cultivation of Myxophyceae. Arch. Mikrobiol., 17: 34-53.

Allen, S.E. (1964). Chemical aspects of heather burning. J. Appl. Ecol., 1: 347-67.

Allen, S.E., Grimshaw, H.M., Parkinson, J.A. and Quarnby, C. (1974). Chemical Analysis of EcologicalMaterials. Blackwell Scientific Publications, Oxford.

Allotey, D.F.K. Asiamah, R.D. Dedzoe, C.D. and Nyamekye, A.L. (2008). Physico-chemical properties of threesalt-affected soils in the Lower Volta Basin and management strategies for their sustainable utilization.West African J. Appl. Ecol., 12: 1-14.

Alves, G.M., Velho, L.F.M., Lansac-Tôha, F.A., Robertson, B. and Bonecker, C.C. (2005). Effect of theconnectivity on the diversity and abundance of cladoceran assemblages in lagoons of the upper ParanáRiver floodplain. Acta Limnol. Bras., 17 (3): 317-327.

Amanullah, B. (1994). Studies on benthic animals of Kaveri River stretch from Karur to Grand Anicut(Tiruchirappalli, India). Ph.D. Thesis, Bharathidasan University, Tamilnadu, India.

Amarsinghe, B.P. and Viverberg, J. (2002). Primary production in a tropical reservoir in Sri Lanka, Hydrobiol.,487: 85-93.

Amatekpor J.K. (1989). The effects of seasonal flooding on the clay mineralogy of a soil series in the VoltaLake draw down area. Land Degrad. Rehabl., 2: 89–100.

Amoros, C. and Bornette, G. (1999). Antagonistic and cumulative effects of connectivity: a predictive modelbased on aquatic vegetation in riverine wetlands. Arch. Hydrobiol. (Suppl.), 115: 311-327.

Amoros, C. and Roux, A.L. (1988). Interaction between water bodies within the floodplains of large rivers:function and development of connectivity. Munstersche Geographische Arbeiten, 29: 125-130.

Amutha, C., Subramanian, P. and Bupesh, G. (2007). Biology and biometry of a beautiful and forageablecrustacean Streptocephalus dichotomus (Baird). Trop. Freshwater Biol., 16 (2): 35-43.

Anadu, D.I., Obioha, A. and Ejike, C. (1990). Water Quality and Plankton Periodicity in Two Contrasting MineLakes in Jos, Nigeria. Hydrobiol., 208: 17-25.

Anand, N. (1998). Indian Freshwater Microalgae. Bishen Singh Mahendra Pal Singh, Dehradun, India.

Anderson, J.M. (1982). Eflect on nitrate concentration in lake water on phosphate release from the sediment.Water Res., 16: 1119-l 126.

Anderson, J.M. and Ingram, J.S.I. (1993). Tropical Soil Biology and Fertility – A Handbook of Methods. 2nd

Edn. CAB International, Wallingford, UK, pp. 221.

Anderson, S.M., Aoyagui and Bonecker, C.C. (2004). Rotifers in different environments of the Upper ParanáRiver floodplain (Brazil): Richness, abundance and the relationship with connectivity. Hydrobiol., 0:1–10.

Andronikova, I.N. (1996). Zooplankton characteristics in monitoring of Lake Ladoga. Hydrobiol., 322: 173–179.

Ansari, K.K. and Prakash, S. (2000). Limnological studies on Tulsidas Tal of Tarai region of Balrampur inrelation to fisheries, Poll. Res., 19 (4): 651-655.

Page 5: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Antunes, S., Castro, B. and Gonçalves, F. (2003). Chronic responses of different clones of Daphnia longispina(field and ephippia) to different food levels. Acta Oecologica, 24: 325–332.

Anon, (2005). Fisheries and environment assessment in selected backwaters on the south west coast ofIndia. Bull. Central Inland Fisheries Research Institute, 139:1-44.

Ananthan, G., Ganesan, M., Sampathkumar, P., Matheven Pillai, M. and Kannan, L. (1992). Distribution oftrace metals in water, sediment and plankton of the Vellar estuary. Seaweed Res. Utilzn., 15: 69-75.

Ananthan, G. (1994). Plankton ecology and heavy metal studies in the marine environs of Pondicherry, India.Ph. D. Thesis, Annamalai University, India.

Ananthan, G., Sampathkumar, P., Soundarapandian, P. and Kannan, L. (2005). Heavy metal concentrations inAriyankuppam estuary and Verampattinam coast of Pondicherry. Indian J. Fish., 52: 501-506 .

Ananthan, G., Sampathkumar, P., Palpandi, C. and Kannan, L. (2006). Distribution of heavy metals in Vellarestuary, Southeast coast of India. J. Ecotoxicol. Environ. Monit., 16: 185-191.

Anu, Upadhyaya, S.K. and Bajpai, A. (2010). Seasonal analysis of sediment of Shahpura Lake of Bhopal(M.P.). Int. J. Environ. Sci. Dev., 1 (4): 333-335.

APHA (2005). Standard Methods for the Examination of Water and Wastewater. 21st Edn. APHA, AWWA,WPCF, Washington DC, USA.

Aquino, L.V. and Nielsen, B.H. (1983). Limnological survey of some lakes in Luzon Island, Philippines for penand cage culture potentials. pp. 65.

Arrignon, J. (1991). Aménagement Piscicole Des Eaux Douces (Edn.) (Ed): Lavoisier, pp. 631.

Arora, J. and. Mehra, N.K. (2009). Seasonal dynamics of zooplankton in a shallow eutrophic, man-madehyposaline lake in Delhi (India): role of environmental factors. Hydrobiol., 626: 27–40.

Arscott, D.B., Tockner, K. and Ward, J.V. (2000). Aquatic habitat diversity along the corridor of an Alpinefloodplain river Fiume Tagliamento, Italy. Arch. Hydrobiol., 149: 679-704.

Arruda, J.A., Marzoif, G.R. and Fauik, R. (1983). The role of suspended sediments in nutrition of zooplanktonin turbid reservoirs. Ecology, 64: 1225-1235.

Aselmann I. and Crutzen P.J. (1989). Global distribution of natural freshwater wetlands and rice paddies, theirnet primary productivity, seasonality and possible methane emissions. J. Atmos. Chem. 8: 307-358.

Asselman, N.E.M. and Middelkoop, H. (1995). Floodplain sedimentation: quantities, patterns and processes.Earth Surf. Procs. Landforms, 20: 481-499.

Ashok Prabu, V., Rajkumar, M. and Perumal, P. (2008). Seasonal variations in physico chemical characteristicsof Pichavaram mangroves, southeast coast of India. J. Environ. Biol., 29: 945-950.

Asante, K.A., Quarcoopome, T. and Amevenku, F.Y.K. (2006). Water Quality of the Weija Reservoir after 28Years of Impoundment, West African J. Appl. Ecol., - Volume 13.

Asonye, C.C., Okolie, N.P., Okenwa, E.E. and Iwuanyanwu, U.G. (2007). Some physico-chemicalcharacteristics and heavy metal profiles of Nigerian rivers, streams and waterways. African J.Biotechnol., 6 (5): 617-624.

Page 6: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Aspetsberger, F., Huber, F., Kargl, S., Scharinger, B., Peduzzi P. and Hein, T. (2002). Particulate organic matterdynamics in a river floodplain system: impact of hydrological connectivity. Arch. Hydrobiol., 156: 23–42.

Atobatele, O.E. and Ugwumba, O.A. (2008): Seasonal variation in the physicochemistry of a small tropicalreservoir (Aiba Reservoir, Iwo, Osun, Nigeria, African J. Biotechnol., 7 (12): 1962-1971.

Atoma, O.C. (2004). Spatial and temporal characteristics of phytoplankton and nutrient dynamics of the ImoRiver Estuary. South Eastern Nigeria. Ph.D. Thesis. Department of Botany, University of Benin, BeninCity, pp. 220.

Auclair, J.C., Frenette, J.J. and Dodson, J. (1993). Zooplankton community structure in southwestern Quebeclakes: the roles of acidity and predation. J. Plankton Res., 15: 1103-1128.

Awasthi, U. and Tiwari, S. (2004). Seasonal trends in abiotic factors of a lentic habitat (Govindgarh lake) Rewa,M.P. India. Eco. Environ. Consv., 10 (2): 65-70.

Aycicek, M., Kaplan, O. and Yaman, M. (2008). Effects of cadmium on germination, seedling growth and metalcontents of sunflower (Helianthus annus L.). Asian J. Chem., 20: 2663-2672.

Ayoade, A.A., Fagade, S.O. Adebisi, A.A. (2009). Dynamics of limnological features of two man-made lakes inrelation to fish production. Afr. J. Biotechnol., 5 (10): 1013-1021.

Azary, A.M., Mohebbi, F., Eimanifar, A., Javanmard, A. and Aliyev, A.F.Q. (2010). Species composition,ecological parameters and seasonal changes of planktonic ciliates population in Bukan dam reservoir.Am. J. Agri. & Biol. Sci., 5 (1): 102-106.

Azim, M.E. and Asaeda, T. (2005). Periphyton structure, diversity and colonization. In: Azim, M.E., Verdegem,M.C.J., Van Dam, A.A. and Bederidge M.C.M. (Eds.), Periphyton ecology, exploitation andmanagement. Cambridge: CABI Publishing, pp. 15-33.

Badsi, H., Ali, H.O., Loudiki, M., El-Hafa, M., Chakli, R. and Aamiri, A. (2010). Ecological factors affectingthe distribution of zooplankton community in the Massa Lagoon (Southern Morocco). African J.Environ. Sci. Technol., 4 (11): 751-762.

Bagde, U.S. and Verma, A.K. (1985). Physico-chemical characteristics of water of J. N. U. Lake at New Delhi.Indian J. Ecol., 12: 251-256.

Bagenal, T.B. (1978). Fecundity in Eggs and Early Life History (Bagenal, T.B. Braum E Part 1). In: Bagenal,T.B. (Ed), Methods for Assessment of Fish Production in Freshwaters. 3rd Edn. pp. 166-178.

Bai, J., Deng, W. and Zhu, Y. (2002): Study on the laws of spatial variation of nitrogen in soil of land/inlandwater ecotones—a case of LWE in Yueliangpao wetland. J. Environ. Sci., 22 (3): 343– 348 (inChinese).

Bai, J. (2003). Biogeochemical processes of nitrogen in marsh soils from Xianghai wetland, China. Ph.D.Thesis, Northeast Institute of Geography and Agricultural Ecology, Chinese Academy of Sciences,China (in Chinese).

Bai, J., Deng, W., Zhu, Y. and Wang, Q. (2004). Spatial variability of nitrogen in soils from land/inland waterecotones. Comm. Soil Sci. Plant Analysis, 35 (5–6): 735–749.

Bai, J., Ouyang, H., Deng, W., Zhu, Y., Zhang, X., and Wang, Q. (2005). Spatial distribution characteristics oforganic matter and total nitrogen of soils in river marginal wetlands. Geoderma, 124 (1–2): 181–192.

Page 7: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Bai, J., Wang, Q., Deng, W., Gao, H., Tao, W. and Xiao, R. (2011). Spatial and seasonal distribution of nitrogenin marsh soils of a typical floodplain wetland in Northeast China. Environ. Monit. Assess., 184 (3):1253-1263, DOI: 10.1007/s10661-011-2037-3.

Baijot, E., Moreau, J. and Bouada-Sana (1997). Hydrobiological aspects of fisheries in Sahel region. Technicalcentre for agricultural and Rural co-operation ACP-EU. pp. 220.

Baker, R. L. (1979). Specific status of Keretella cochearis (Gosse) and K. earliner, Ahlstrom (Rotifera:Brachionidae) Morphological and ecological considerations. Con. J. Zool., 57 (9): 1719–1722.

Baird, D. and Ulanowicz, R.E. (1989). The seasonal dynamics of the Chesapeake Bay ecosystem. Ecol.Monogr., 59: 329–364.

Bajpai, A., Pani, S., Jain, R.K. and Mishra, S.M. (2002). Heavy metal contamination through idol immersion ina tropical Lake, Eco. Environ. Cons., 8 (2), 157-159.

Bamforth, S. (1958). Ecological studies on the planktonic Protozoa of a small artificial pond. Limnol.Oceanogr., 3: 398-412.

Bahura, C.K., Bahura, P., Saxena, M.M. (1993). Zooplankton community of shivbari temple tank, Bikaner. J.Ecol., 5: 5-8.

Bandela, N.N., Vaidya, D.P. Lomte, V.S. and Shivanikar, S.V. (1999). The distribution pattern of phosphate andnitrogen forms and their interrelationships in Barul Dam water, Poll. Res., 18 (4): 411-414.

Banerjee, U.S. and Gupta, S. (2010). Spatio-temporal variations in hydrochemistry of river Damodar along thestretch of Dishergarh to Pallaroad, Burdwan, West Bengal, India, Poll. Res., 29 (2): 267-274.

Bardarudeen, T., Damodaran, K.T., Sajan, K., and Padmalal, D. (1996). Texture and geochemistry of thesediments of a tropical mangrove ecosystem, southwest coast of India. Environ. Geol., 27: 164-169.

Barreto, W.J., Ribeiro, M.R., Scarminio, I.S., Solci, M.C., Nozaki, J., de Oliveira, E. and Barreto, S.R.G.(2005). Determination of trace metal concentrations in a flooded tropical lake during a completehydrological cycle. Ann. Limnol. - Int. J. Lim., 41 (1): 47-55.

Barreto, W.J., Ribeiro, M.R., Solci, M.C., Scarminio, I.S., Nozaki, J., de Oliveira, E. and Barreto, S.R.G.(2005). Interpretation of seasonal variation of metals and abiotic properties in a tropical Lake UsingMultivariate Analysis and MINTEQA2 Program. Analyt. Sci., 21: 209-214.

Barica, J. (1994). How to keep green algae in eutrophic lakes. Biol., 49 (4): 611–614.

Basu, M., Roy, N. and Barik, A. (2010). Seasonal Abundance of Net Zooplankton Correlated with Physico-Chemical Parameters in a Fresh Water Ecosystem, Intern. J. Lakes Rivers, 3 (1): 67-77.

Barnes, R.S.K., Calow, P. and Olive, P.J.W. (1988). The Invertebrates: a new synthesis. Blackwell ScientificPublications, London.

Baruah, B.K. and Das, M. (1997). Soil characteristics of Jagiroad region of central Assam. Environ. Ecol., 15(3): 722-723.

Baruah, B.K. (1994). A study on the effects of Nagoan Paper Mill effluents on the aquatic ecosystems ofneighbouring area. Ph.D. Thesis, Gauhati University, Assam, India.

Baruah, B.K. and Das, M. (1998). Study on the effects of Paper Mill effluents physico-chemical characteristicsof soils. J. Nat. Conserv., 10 (1): 101-106.

Page 8: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Baranyi, C., Hein, T., Holarek, C., Keckeis, S. and Schiemer, F. (2002). Zooplankton biomass and communitystructure in a Danube River floodplain system: effects of hydrology. Freshwater Biol., 47: 473–482.

Basu, M., Roy, N. and Barik, A. (2010). Seasonal abundance of net zooplankton correlated with physico-chemical parameters in a fresh water ecosystem. Int. J. Lakes Rivers, 3 (1): 67-77.

Basu, B.K. and Pick, F.R. (1996). Factors regulating phytoplankton and zooplankton biomass in temperaterivers. Limnol. Oceanogr., 41: 1572–1577.

Batayneh, A.T., Al-Momani, I.F., Jaradat, R.A., Awawdeh, M.M, Rawashdeh, A.M.M. and Ta'any, R.A. (2008).Weathering processes effects on the chemistry of the main springs of the Yarmouk Basin, NorthJordan, J. Environ. Hydrol., 16: 1-11.

Battes, K.P. (2005). Structure, abundance and seasonal dynamics of zooplankton community from Lake Stiucii,Natural Reserve, Cluj County. Biologie animală, 16: 99-110.

Battish, S.K. (1992). Freshwater zooplankton of India. Oxford and IBH Publishing Co. Pvt. Ltd.

Bayley P.B. (1980). The limits of limnological theory and approaches as applied to river-floodplain systems andtheir fish production. Trop. Ecol. Dev., 739-746.

Bayley P.B. (1988). Factors affecting growth rates of young tropical fishes: Seasonality and density dependence.Environ. Biol. Fishes, 21: 127-142.

Bayley, P.B. (1991). The flood pulse advantage and the restoration of river-floodplain systems. Reg. Rivers:Res. Manag., 6: 75-86.

Bayley, P.B. (1995). Understanding large River-Floodplain ecosystems. Significant economic advantages andincreased biodiversity and stability would result from restoration of impaired systems. BioSci., 45 (3):153-158.

Baziramakenga, R., Simard, R.R. and Leroux, G.D. (1995). Determination of organic acids in soil extracts byion chromatography. Soil Biol. Biochem., 27: 349- 356.

Bedford, B. L. and Preston, E.M. (1988). Developing the scientific basis for assessing cumulative effects ofwetland loss and degradation on landscape functions: Status, perspectives, and prospects. Environ.Manag., 12: 751-771.

Bedford, B.L. (1999). Cumulative effects on wetland landscapes: Links to wetland restoration in the UnitedStates and southern Canada. Wetlands, 19: 775-788.

Bechtold, J.S. (2007). Fluvial Sediment Influences on Floodplain Soil Biogeochemistry. Ph.D. Thesis,University of Washington, pp. 170.

Bénech, V and Peñáz, M. (1995). An outline on lateral fish migrations within the Central Delta of the NigerRiver, Mali. Hydrobiol., 303: 149-157.

Benson, N.U. and Etesin, U.M. (2008). Metal contamination of surface water, sediment and Tympanotonusfuscatus var. radula of Iko River and environmental impact due to Utapete gas flare station, Nigeria.Environmentalist, 28:195–202, DOI: 10.1007/s10669-007-9127-3.

Bernal, B. (2008). Carbon pools and profiles in wetland soils: The effect of climate and wetland type. M.S.Thesis, Graduate School of the Ohio State University.

Berger, W.H. and Parker, F.L. (1970). Diversity of planktonic Foramenifera in deep sea sediments. Science,168: 1345-1347.

Page 9: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Berman, T. and Chava, S. (1999). Algal growth on organic compounds as nitrogen sources. J. Plankton Res., 21:1423–1437.

Bernice, R. (1972a). Hatching and postembryonic development of Streptocephalus dichotomus Baird(Crustacea, Anostraca). Hydrobiol., 40 (2): 251-278.

Bernice, R. (1972b). Ecological studies on Streptocephalus dichotomus Baird (Crustacea: Anostraca).Hydrobiol., 39 (2): 217-240.

Behrndt, H. (1990). The chemical composition of phytoplankton and zooplankton in eutrophic shallow lake.Arch. Hydrobiol., 118: 129-145.

Bernot, R. J., Dodds, W.K., Quist, M.C. and Guy, C.S. (2004). Spatial and temporal variability of zooplanktonin a Great Plains reservoir. Hydrobiol., 525: 101-112.

Besemer, K., Moeseneder, M.M., Arrieta, J.M., Herndl, G.J and Peduzzi, P. (2005). Complexity of bacterialcommunities in a river-floodplain system (Danube, Austria). Appl. Environ. Microbiol., 71 (2): 609–620.

Bhatt, L.R., Lacoul, P., Lekhak, H.D. and Jha, P.K. (1999). Physico-chemical characteristics and phytoplanktonof Taudaha Lake, Kathmandu, Poll. Res., 18 (4): 353-358.

Bhaumik, U. Jha, B.C. Mitra, K. and Vinci, G.K. (2003). Fish yield optimization in beels: Some case studiesfrom West Bengal. Bull. Cent. Inland Fish. Res. Inst. Barrackpore, 125: 43–54.

Bhandari, N.S. and Nayal, K. (2008). Correlation study on physico-chemical parameters and quality assessmentof Kosi River water, Uttarakhand. E-J. Chem., 5 (2): 342-346.

Bharali, J., Baruah, B.K. and Sarma, H.P. (2008). Studies on physico-chemical characteristics of water of thewetlands in Kaziranga National Park, Assam. Poll. Res., 27 (4): 729-733

Bharadwaja, Y. (1940). Some aspects of the study of Myxophyceae. Proceedings of the 27th Indian ScienceCongress, Madras, pp. 168.

Bharadwaj, K. and Sharma, L.L. (1999). Study of some physico-chemical characteristics of a sewage fertilizedseasonal pond of Udaipur (Rajashtan). J. Environ. . Poll., 6 (4): 255-260.

Bhaskar, B.P. and Nagaraju, M.S.S. (1998). Characterization of some salt affected soils occurring in Chitravathiriver basin of Andhra Pradesh. J. Indian Soc. Soil Sci., 46: 416-421.

Bhuiyan, J.R and Gupta, S. (2007). A comparative hydrobiological study of a few ponds of Barak Valley,Assam, and their role as sustainable water resources. J. Environ. Biol., 28: 799-802.

Bhuyan, B. and Sharma, H.P. (2006). Evaluation of soil fertility status and chemical indicators of soil quality intea gardens of Lakhimpur District, Assam. Ecol. Environ. Consv., 12 (2): 263-273.

Bianchi, F., Acri, F., Aubry, F.B., Berton, A., Boldrin, A., Camatti, E., Cassin D. and Comaschi, A. (2003). Canplankton communities be considered as bioindicators of water quality in the laggon of Venice? Mar.Pollut. Bull. , 46: 964-971.

Bianchini, Jr. I., Cunha-Santino, M.B. and Peret, A.M. (2008). Oxygen demand during mineralization of aquaticmacrophytes from an oxbow lake. Revista Brasileira de Biologia / Brazilian J. Biol., 68 (1): 61 67.

Biggs, B.J.F. (1996). Patterns in benthic algal of streams. In: Stevenson, R.J., Bothwell, M.L. and Lowe, R.L.(Eds.), Algal ecology, freshwater benthic ecosystems. Academic Press, San Diego, pp. 31-56.

Page 10: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Bilgrami, K.S. and Datta Munshi, J.S. (1979). Limnological survey and impact of human activities on the riverGanges (Barauni to Farakka range). A technical report. Post-graduate Dept of Botany, BhagalpurUniversity, Bhagalpur.

Bilton, D.T., Foggo, A. and Rundle, S.D. (2001). Size, permanence and the proportion of predators in ponds.Arch. Hydrobiol., 151: 451–458.

Bini, L.M., Velho, L.F.M. and Lansac-Tôha, FA. (2003). The effect of connectivity on the relationship betweenlocal and regional species richness of testate amoebae (Protozoa, Rhizopoda) in floodplain lagoons ofthe Upper Paraná River, Brazil. Acta Oecologica, 24 (1): 145-151.

Biney, C.A. and Christopher, A.B. (1991). Trace metal concentrations in fish and sediments from the WIWI: Asmall urban river in Kumasi, Ghana. Trop. Ecol., 32 (2): 197-206.

Binning, K. and Baird, D. (2001). Survey of heavy metals in the sediments of the Swartkops River Estuary, PortElizabeth South Africa. Water SA, 27: 461-466.

BIS (1991). Bureau of Indian Standards (BIS), Indian standard specification for drinking water, 1S: 10500, pp.2–4.

BIS (2009). Bureau of Indian Standards (BIS), Draft Indian Standard: Drinking Water— Specification. 2nd

Revision, 1S: 10500, pp. 1–24.

Bishel-Machung, L., Brooks, R.P., Yates, S.S. and Hoover, K.L. (1996). Soil properties of reference wetlandsand wetland creation projects in Pennsylvania. Wetlands, 16: 532-541.

Biswas, S. (1984). Phytoplankton of Opi Lake Enugu State, Nigeria. Verhatnisse in Vereiningungen Limnologie,22: 1180-1184.

Biswas, M., Bandyopadhyay, S., Roy, P.K. and Mazumdar, A. (2005). A holistic approach of participatorymanagement of wetland: Bhomra Beel - A Case Study, J. Inst. Pub. Health Eng. India, 4: 37-41.

Biswas, M., Roy, P.K. and Mazumdar, A. (2007). A comparative study of users’ perception of wetland regions,J. Environ. Prot., 27 (3): 209-215.

Blomqvist, P., Pettersson, A. and Hyenstrand, P. (1994). Ammonium-nitrogen: A key regulatory factor causingdominance of non-nitrogen-fixing cyanobacteria in aquatic systems. Arch. Hydrobiol., 132: 141-164.

Boyd, C.E. (1982). Water Management for Pond Fish Culture. Elsevier Scientific Publications, Amsterdam Dev.Aqua. Fisher. Sci., 9: 231.

Bishwaroy, M., Samal, N.R., Roy, P.K. and Mazumder, A. (2010). Watereshed management with specialemphasis on freshwater wetland in West Bengal, India, Global NEST J., X (X): I-XX.

Boneto, C.A., Zalocar, Y. and Lancelle, H.G. (1984). Limnological study of an oxbow-lake covered byEichhornia crassipes in the Paraná River. Verh. Internat. Verein. Limnol., 22: 1315-1318.

Boney, A.D. (1983). Phytoplankton. 4th Edn. London. Edward Amold Publishers Ltd.

Bond, R.M. (1934). Report on phyllopod Crustacea (Anostraca, Notostraca and Conchostraca) including arevision of the Anostraca of the Indian Empire. Memoirs Connecticut Acad. Arts Sci., 10: 29-62.

Bonecker, C.C., Lansac-Tôha, F.A., Bini, L.M. and Velho, L.F.M. (2002). Daily fluctuation in rotifer populationabundance in two environments of the upper Paraná river floodplain, Brazil. Amazoniana, 17: 139-151.

Page 11: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Bonecker, C.C., Da Costa, L.C., Velho, M.F.L. and Lansac-Toha, F.A. (2005). Diversity and abundance of theplanktonic rotifers in different environments of the Upper Parana´ River floodplain (Parana´ State –Mato Grosso do Sul State, Brazil). Hydrobiol., 546: 405–414.

Bonecker, C.C., Aoyagui, A.S.M. and Santos, R.M. (2009). The impact of impoundment on the rotifercommunities in two tropical floodplain environments: interannual pulse variations. Revista Brasileirade Biologia /Brazilian J. Biol. (Suppl.), 69 (2): 529-537.

Borg, H. (1995). Trace elements in lakes. In: Trace elements in natural waters. Salbu, B. and Steinnes, E.(Eds.). CRC Press, USA, pp. 177-201.

Borges, M.G. and Pedrozo, C.S. (2009). Zooplankton (Cladocera, Copepoda and Rotifera) richness, diversityand abundance variations in the Jacuí Delta, RS, Brazil, in response to the fluviometric level. ActaLimnol. Bras., 21 (1): 101-110.

Borges, P.A.F. and Train, S. (2009). Phytoplankton diversity in the Upper Paraná River floodplain during twoyears of drought (2000 and 2001). Braz. J. Biol. (Suppl.), 69 (2): 637-647.

Bormans, M. and Condie, S.A. (1998). Modelling the distribution of Anabaena and Melosira in a stratified riverweir pool. Hydrobiol., 364: 3-13.

Boulin, V.V., Nikulina, V.N., Paveljeva, E.B. and Stepanova, L.A. (1999). Microbial loop in trophic food webof lake plankton. J. General Biol., 60: 431-444.

Boxall, A.B.A., Comber, S.D., Conrad, A.U., Howcroft, J. and Zaman, N. (2000). Inputs, monitoring and fatemodelling of antifouling biocides in UK Estuaries. Mar. Poll. Bull., 40: 898-905.

Bouyoucous, G.A. (1951). Determination of Particle size in soils. Agronomy J., 42: 438-443.

Boyd, C.E. (1979). Water Quality in Warm Water Fish Ponds. – Auburn University, Agricultural Experimentsstation Auburn, Alabame USA: 79-98.

Bozelli, R.L. (1994). Zooplankton community density in relation to water level fluctuations and inorganicturbidity in an Amazonian lake, “Lago Batata”, State of Pará, Brazil. Amazoniana, XIII (1/2): 17-32.

Brady, N.C. (1974). The Nature and Properties of Soils. MacMillan, New York, USA.

Brady, N.C. (1990). The Nature and Properties of Soils. 10th Edn. Collier Macmillan Publishers, London, UK.pp. 83– 97.

Branes, Z., Ounissi, M., Sargos, D. and Amblard, C. (2007). Density and biomass of phytoplankton in theOubeira Lake (North-East Algeria). J. Fisher. Intern., 2 (3): 200-206.

Branco, C.W.C., Rocha, M-I., Pinto, G.F.S., Gômara, Filippo, R.D. (2002). Limnological features of FunilReservoir (R.J., Brazil) and indicator properties of rotifers and cladocerans of the zooplanktoncommunity. Lakes Reserv. Res. Manag., 7: 87-92.

Brendonck, L., Michels, E., De Meester, L. and Riddoch, B.J. (2002). Temporary pools are not enemy free.Hydrobiol., 486: 147–159.

Brett, M.T. (1989). Zooplankton communities and acidification processes (a review). Water Air Soil Poll., 44:387-414.

Brewer, P.G. (1975). Minor elements in seawater. In: Riley, J.P. and Hirrow, G.S. (Eds.), ChemicalOceanography, 2nd Edn. Vol. 1. Academic Press, London, pp. 415–491.

Page 12: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Brinson, M.M., Lugo, A.E. and Brown, S. (1981). Primary productivity, decomposition and consumer activityin freshwater wetlands. Ann. Rev. Ecol. Syst., 12: 123–161

Brinson, M.M., Bradshaw, H.D. and Holmes, R.N. (1983). Significance of floodplain sediments in nutrientexchange between a stream and its floodplain. In: Fontaine, T.D. and Bartell, S.M. (Eds.), Dynamics ofLotic Ecosystems. Ann. Arbor Science, pp. 199–221.

Brooks, K.N., Ffolliott, P.F., Gragersen, H.M. and DeBano, L.F. (1997). Hydrology and the Management ofWatersheds. 2nd Edn. Iowa State University Press. Ames, Iowa.

Brown, A.V., Limbeck, R.L. and Schram, M.D. (1989). Trophic importance of zooplankton in streams withalluvial riffle and pool geomorphometry. Arch. Hydrobiol., 114: 349-367.

Brunberg, A.K. and Blomqvist, P. (2002). Benthic overwintering of Microcystis colonies under differentenvironmental conditions, J. of Plankton Research 24 (11): 1247-1252.

Bryan, M., Atchison, G. and Sandheinrich, M. (1995). Effects of Cadmium on the foraging behavior and growthof juvenile Bluegill, Lepomis macrochirus, Canadian J. Fisher. Aqua. Sci., 52: 1630-1638.

Byars, J. A. (1960). A freshwater pond in New Zealand. Aust. J. Mar. Freshwater Resources, 11: 222-240.

Bulut, V.N., Bayram, A., Gundogdu, A., Soylak, M. and Tufekci, M. (2010). Assessment of water qualityparameters in the stream Galyan, Trabzon, Turkey. Environ. Monit. Assess., 165: 1–13, DOI:10.1007/s10661-009-0922-9.

Bunn, S.E. and Arthington, A.H. (2002). Basic principles and ecological consequences of altered flow regimesfor aquatic biodiversity. Environ. Manag., 30: 492–507

Bunn, S.E., Davies P.M. and Winning, M. (2003). Sources of organic carbon supporting the food web of an aridzone floodplain river. Freshwater Biol., 2003: 619 – 635.

Burgis, M.J. (1974). Revised estimates for the biomass and production of zooplankton in Lake George, Uganda.Freshwater Biol., 4: 535-541.

Butler, J., Croome, R. and Rees, G.N. (2007). The composition and importance of the phytoneuston in twofloodplain lakes in south-eastern Australia. Hydrobiol., 579: 135–145.

Calijuri, M.C., Dos Santos, A.C.A. and Jati, S. (2002). Temporal changes in the phytoplankton communitystructure in a tropical and eutrophic reservoir (Barra Bonita, S.P. – Brazil). J. Plankton Res., 24: 617-634.

Calijuri, M.C., Dos Santos, A.C.A (2001).Temporal variations in phytoplankton primary production in reservoir(Barra Bonita, Sp- Brazil).

Caplancq, J. (1995). Production\ Primaire Autotrophe. In: Pourriot, R., Meybeck, M. and Masson, P. (Eds.),Limnologie Générale. pp. 228-252.

Canfield, T.J. and Jones, J.K. (1996). Zooplankton abundance, biomass, and size-distribution in selectedMidwestern waterbodies and relation with trophic state. J. Freshwater Ecol., 11: 171-181.

Cardoso, L.S. and Marques, D.M. (2009). Hydrodynamics-driven plankton community in a shallow lake. Aquat.Ecol., 43 (1): 73-84.

Carmichael, W. (1981). The Water Environment, Algal Toxins and Health. Plenum press, New York, N.Y.

Page 13: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Carvalho, P., Thomaz, S.M. and Bini, L.M. (2003). Effects of water level, abiotic and biotic factors onbacterioplankton abundance in lagoons of a tropical floodplain (Paraná River, Brazil). Hydrobiol., 510(1-3): 67-74, DOI: 10.1023/B:HYDR.0000008532.71152.38.

Camargo, A. F. M. and Esteves, F. A. (1995). Influence of water level variation on fertilization of an oxbowlake of Rio Mogi-Guaçu, State of São Paulo, Brazil. Hydrobiol., 299: 185-193.

Campos, J.R.C., Lansac-Tôha, F.A., Nunes, M.A., Garcia, A.P.P. and Prado, F.R. (1996). Composição dacomunidade zooplanctônica de três lagoas da ilha Porto Rico na planicie de inundação do Alto RioParaná. Acta Limnol. Brasil., 8: 183-194.

Carpenter, S.R. and Kitchell, J.F. (1993). The trophic cascade in lakes, Cambridge University Press, Cambridge,pp. 385.

Carpenter, S., Kitchell, J. and Hodgson, J. (1985). Cascading trophic interactions and lake productivity. Biosci.,35: 634-638.

Carvalho, P., Thomaz, S.M. and Bini, L.M. (2003). Effects of water level, abiotic and biotic factors onbacterioplankton abundance in lagoons of a tropical floodplain (Paraná River, Brazil). Hydrobiol., 510(1-3): 67-74, DOI: 10.1023/B:HYDR.0000008532.71152.38.

Carvalho, P., Thomaz, S.M. and Bini, L.M. (2005). Effects of temperature on decomposition of a potentialnuisance species: the submerged aquatic macrophyte Egeria najas Planchon (Hydrocharitaceae).Revista Brasileira de Biologia / Brazilian J. Biol., 65 (1): 767 770.

Cataldo, D., Colombo, J.C., Boltovskoy, D., Bilos, C. and Landoni, P. (2001). Environmental toxicityassessment in the Parana River delta (Argentina): simultaneous evaluation of selected pollutants andmortality rates of Corbicula Fluminea (Bivalvia) early juveniles. Environ. Poll., 112 (3): 379-389.

Census of India (2001). www.censusindia.net/results/index.html.

Çetin, A.K. (2000). Phytoplankton of Gobafli Lake (Adıyaman, Turkey) and their seasonal variations. Int. J.Algae, 2: 87-96.

Chakrabarty, R.D., Roy, P. and Singh, S.B. (1959). A quantitative study of the plankton and physico-chemicalconditions of the river Jamuna at Allahabad. Indian J. Fisher., 6 (1): 186–203.

Chakraborty, R. Zaman, S. Mukhopadhyay, N. Banerjee, K. and Mitra, A. (2009). Seasonal variation of Zn, Cuand Pb in the estuarine stretch of West Bengal. Indian J. Mar. Sci., 38 (1): 104-109.

Chandrasekhar, J.S., Babu, K.L. and Somasekar, R.K. (2003). Impact of urbanization on Bellandur Lake,Bangalore – A case study, J. Environ. Biol., 24 (3): 223-227.

Chandler D.C. (1937). Fate of typical lake plankton in streams. Ecol. Monogr., 7: 445-479.

Chandran, R. (1985). Seasonal and tidal variation in the phytoplankton in the gradient zone of Vellar Estuary,Mahasagar Bull., National Institute of Oceanography. 18 (1): 37-48.

Chandran, R. and Ramamoorthy, K. (1984). Hydrobiological studies in the gradient zone of the Vellar Estuary.I. Physico-chemical parameters, Mahasagar Bull. Natl. Inst. Oceanogr., 17: 69-78.

Choudhary, S. and Singh, D.K. (2001). Phytoplankton population of Boosra Lake (Gaighat block, Muzaffarpur,Bihar). Environ. Ecol., 19: 171-174.

Choudhury, S.B. and Panigrahy, R.C. (1991). Seasonal distribution and behaviour of nutrients in the creek andcoastal waters of Gopalpur, East coast of India, Mahasagar Bull. Natl. Inst. Oceanogr., 24 (2): 81-88.

Page 14: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Chowdhury, M.M.R., Mondol, M.R.K. and Sarker, C. (2007). Seasonal variation of plankton population ofBorobila beel in Rangpur district. Univ. j. zool. Rajshahi Univ., 26: 49-54.

Charkhabi, A. H. and Sakizadeh, M. (2006). Assessment of Spatial Variation of Water Quality Parameters in theMost Polluted Branch of the Anzali Wetland, Northern Iran, Polish J. Environ. Stud., 15 (3): 395-403

Chaturvedi, R.K., Sharma, K.P., Sharma, K., Bharadwaj, S.M. and Sharma, S. (1999). Plankton community ofpolluted water around Sanganer, Jaipur. J. Environ. Poll., 6 (1): 77-84.

Chattopadhyay, G.N., Saha, P.K., Ghosh, A. and Karmakar, H.C. (1988). A study on optimum BOD levels forfish culture in wastewater ponds. Biol. Wastes, 25: 79-83.

Chattopadhyay, G.N. (1998). Chemical Analysis of Fish Pond Soil and Water. Daya Publishing House, Delhi -110035.

Chattopadhyay, C. (2007). Physico-chemical parameters, biotic community and species diversity of autotrophicnet plankton in a fresh water lake at Barddhaman, West Bengal. Ph.D. Thesis, University of Burdwan.

Chattopadhyay, C. and Barik, A. (2009). The composition and diversity of net zooplankton species in a TropicalFreshwater Lake. Int. J. Lakes Rivers, 2 (1): 21-30.

Chattopadhyay, C. and Banerjee, T.C. (2007). Temporal changes in environmental characteristics and diversityof net phytoplankton in a freshwater lake. Turk. J. Bot. 31: 287-296.

Chattopadhyay, C. and Banerjee, T.C. (2008). Water temperature and primary production in the euphotic zoneof a tropical shallow fresh water lake. Asian J. Expt. Sci., 22: 103 – 108.

Chauhan, D.P.S. and Sharma, L.L. (1997). Recyling of distillery effluents using zooplankton culture system.Poll. Res., 16 (4): 229-232.

Chellappa, N.T., Borba, J.M. and Rocha, O. (2008). Phytoplankton community and physical-chemicalcharacteristics of water in the public reservoir of Cruzeta, RN, Brazil. Braz. J. Biol., 68: 477-494.

Chellappa, N.T., Camara, F.R.A. and Rocha, O. (2009). Phytoplankton community: indicator of water quality inthe Armando Ribeiro Gonçalves reservoir and Pataxó channel, Rio Grande do Norte, Brazil. BrazilianJ. Biol.,. 69 (2): 241-251.

Chen, Y.Q. (1986). The vertical distribution of some pelagic copepods in the eastern tropical Pacific. CaliforniaCooperative Oceanic Fisheries Investigations, Progress Report 27: 205-227.

Chester, R., Thomas, A., Lin, F., Basaham, A. and Jacinto, G. (1988). The solid state speciation of copper insurface water particulates and oceanic sediments. Mar. Chem., 24: 261-292.

Chetia, M., Sarma, H.P., Banerjee, S., Singh, L. and Dutta, J. (2010). Use of surface water for drinking purposein Golaghat district of Assam, India. Int. J. Chem. Tech. Res., 2 (1): 269-277.

Christopher, B.C. and William, P.C. (2000). Sediment and nutrient accumulation in river floodplain anddepressional freshwater wetlands of Georgia, USA. Wetlands, 20: 323-332

Christensen, B.T. (1996). Carbon in primary and secondary organomineral complexes. In: Carter, M. andStewart, B. (Eds.) Structure and organic matter storage in agricultural soils. CRC Press, Boca Raton,FL, USA. pp. 97- 165.

Chorus, I. and Bartram, J. (1999). Toxic cyanobacteria in water: a guide to their public health consequences,monitoring and management. World Health Organization.

Page 15: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Chourasia, S.K. and Adoni, A.D. (1985). Zooplankton dynamics in a shallow eutrophic lake. Proc. Nat. Symp.Pure Appl. Limnol. Bot. Soc. Sagar, 32: 30-39.

Chukwu, L.O. (2006). Spatial and temporal variation of heavy metal contamination in sediments of a perturbedurban river. J. Curr. Sci., 9 (1): 01-10

Chukwuma, C.C., Joseph, E.E., Adagadzu, K.J. and Okorie, I.A. (2011). Seasonal variations of iron (Fe), copper(Cu), zinc (Zn), and lead (Pb) concentrations in selected surface waters of Enugu State of Nigeria. Int.J. Biosci., 1 (4): 86-93.

Clesceri, L.S., Green, A.E. and Eaton, A.D. (1998). Standard Methods for the Examination of Water andWastewater. 20th Edn. Washington D.C., American Public Health Assoc., American Water WorksAssoc., and Water Environment Fed., 2: 1-90, 4: 52-160, 10: 1-28.

Coetzee, L., du Preez, H. and van Vuren, J. (2002). Metal Concentrations in Clarias gariepinus and Labeoumbratus from the Olifants and Klein Olifants River, Mpumalanga, South Africa: Zinc, Copper,Manganese, Lead, Chromium, Nickel, Aluminium and Iron, Water SA, 28 (4): 433-448.

Cole, G.A. (1975). Text Book of Limnology. C.V. Mosby. Co., St. Lois, Sanfransisco.

Cole, G.A. (1983). Text Book of Limnology. 3rd Edn. C.V. Mosby Co., London, pp: 40.

Conde, D.S., Bonilla, L., Aubriot, R., de León and Pintos, W. (2007). Relative contribution of planktonic andbenthic microalgae production in an eutrophic coastal lagoon of South America. J. Limnol., 78: 207-212.

Collos, Y. Vaquer, A., Johnston, A.M., Pons, V., Bibeni, B. and Richard, S. (2001). Carbon fixation, ammoniumuptake and regeneration in an equatorial lake: biological versus physical control. J. Plankton Res., 23(3): 263-270.

Collins, M.E. and Kuehl, R.J. (2001). Organic matter accumulation and organic soils. In: Richardson, J.L. andVepraskas, M.J. (Eds.), Wetland Soils. Genesis, Hydrology, Landscapes and Classification. LewisPublishers, CRC Press. Boca Raton, Florida. pp. 137-162.

Collinson, N.H., Biggs, J., Corfield, A., Hodson, M.J., Walker, D., Whitfield, M. and Williams, P.J. (1995).Temporary and permanent ponds: an assessment of the effects of drying out on the conservation valueof aquatic macro invertebrate communities. Biol. Conserv., 74: 125–133.

Coops, H., Buijse, A.D., Ibelings, B., Van Geest, G., Roozen, F., Roijackers, R.M.M. and Scheffer, M. (2000).Design guidelines for restoration of water bodies in the Lower Rhine floodplains. AngewandteLandschaftsökologie, 37: 133-139.

Cooper, J.R. and Gilliam, J.W. (1987). Phosphorus redistribution from cultivated fields into riparian areas. SoilSci. Soc. Amer. J., 51: 1600–1604.

Contreras, J.J., Sarma, S.S.S., Merino-Ibarra, M. and Nandini, S. (2009). Seasonal changes in the rotifer(Rotifera) diversity from a tropical high altitude reservoir (Valle de Bravo, Mexico). J. Environ. Biol.,30: 191-195.

Cowardin, L.M., Carter, V., Golet, F.C. and LaRoe, E.T. (1979). Classification of Wetlands and DeepwaterHabitats of the United States. U.S. Fish and Wildlife Service, Washington, DC. FWS/OBS-79/31.

Crossetti, L.O. and Bicudo, C.E.M. (2005). Effects of nutrient improverishment on phytoplankton biomass: amesocosms experimental approach in a shallow eutrophic reservoir (Garças Pond), São Paulo,southeast Brazil. Revista Brasileira de Botânica, 28 (1):95-108.

Page 16: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Cuker, B.E. (1997). Field experiment on the influence of suspended clay and P on the plankton of a small lake.Limnol. Oceanogr., 32: 840-847.

Cunha-Santino, M.B., Gouvȇa, S.P., Bianchini, Jr. I., and Vierira, A.A.H. (2008). Oxygen uptake duringmineralization of photosynthesized carbon from phytoplankton of the Barra Bonita Reservoir: amesocosm study. Revista Brasileira de Biologia / Brazilian J. Biol., 68 (1): 115-122.

Dagaonkar, A. and Saksena, D.N. (1992). Physico-chemical and Biological characterization of a temple tank,Kaila Sagar, Gwalior, Madhya Pradesh. J. Hydrobiol., 8 (1): 11-19.

Damotharan, P., Perumal, N.V. and Arumugam, M. (2010). Studies on zooplankton ecology from Kodiakkarai(Point Calimere) coastal waters (South east coast of India). Res. J. Biol. Sci., 5 (2): 187-198.

Danilov, R.A. and Ekelund, N.G.A. (2001). Phytoplankton communities at different depths in two eutrophic andtwo oligotrophic temperate lakes at higher latitude during the period of ice cover. Acta Protozool., 40:197 – 201.

Dasman, R. (1984). Environmental Conservation. John Wiley and Sons. New York.

Das, P.K. Micheal, R.G. and Gupta, A. (1996). Zooplankton community structure of lake Tasek, a tectonic lakein Garao hills, India. Trop. Ecol., 37: 257-263.

Das, J., Das, S.N. and Sahoo, R.K. (1997). Semidiurnal variation of some physico-chemical parameters inMahanadi estuary, East coast of India, Indian J. Mar. Sci., 26: 323-326.

Das, J.D. and Nolting, R.F. (1993). Distribution of trace metals from solis and sewage sludge’s a bay refluxingwith aqua-regia. Analyst, 108: 277-285.

Das, S.K. (2002). Primary production and zooplankton biodiversity in brackish water shrimp culture pond. J.Ecobiol., 14 (4): 267-271.

Das, K. and Gupta, S. (2010). Aquatic Hemiptera Community of Agricultural Fields and Rain Pools in CacharDistrict, Assam, North East India. Assam Univ. J. Sci. Technol., 5 (1): 123-128.

Das, K. and Gupta, S. (2011). Hemipteran insect community of an oxbow lake in Barak Valley, Assam, NorthEast India: an ecological study. Eco. Env. Consv., 17 (1): 61-65.

Das, A.C., Baryagm, B.K., Baruah, D. and Sengupta, S. (2003). Study on wetland of Guwahati city: 2. Waterquality of rivers and drains. Poll. Res., 22 (1): 117–119.

Das, A.K. and Shrivastava, N.P. (2003). Ecology of Sarani reservoir (M.P.) in the context of fisheries Poll. Res.,22 (4): 533-539.

Das, T. and Das, A.K. (2005). Local soil knowledge of smallholder rice farmers: A case study in Barak Valley,Assam. Indian J. Trad. Knowl., 4 (1): 94-99.

Das, T. and Das, A.K. (2010). Litter production and decomposition in the forested areas of traditionalhomegardens: a case study from Barak Valley, Assam, northeast India. Agroforestry systems, 79 (2):157-170, DOI: 10.1007/s10457-010-9284-0

D’Angelo, E.M., Karathanasis, A.D., Sparks, E.J., Ritchey, S.A. and Wehr-McChesney, S.A. (2005). Soilcarbon and microbial communities at mitigated and late successional bottomland and forest wetlands.Wetlands, 25 (1): 162–175.

Dassenakis, M., Scoullos, M., Foufa, E., Krasakopoulou, E., Pavlidou, A. and Kloukiniotou, M. (1998). Effectsof multiple source pollution on a small Mediterranean river. Appl. Geochem., 13 (2): 197-211.

Page 17: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Datta, T., Acharya, S. and Das, M.K. (2005). Impact of water quality on the stress physiology of cultured Labeorohita. J. Environ. Biol., 26 (3): 582-592.

Datta, D., Banerjee, P. K. and Datta, S. (2009). Seasonal Variation of Water Quality Index of a Stagnant SurfaceWater Body IE (I) Journal-EN, 90: 27-32.

Davies, O.A., Abolude, D.S. and Ugwumba, A.A.A. (2008). Phytoplankton of the lower reaches of OkpokaCreek, Port Harcourt, Nigeria. J. Fish. Intern., 3 (3): 83-90.

Davies, O.A., Abowei, J.F.N. and Otene, B.B. (2009a). Seasonal Abundance and Distribution of Plankton ofMinichinda Stream, Niger Delta, Nigeria. Amer. J. Sci. Res., 2: 20-30.

Davies, O.A and Abowei, J.F.N (2009b). Sediment Quality of Lower Reaches of Okpoka Creek, Niger Delta,Nigeria. European Journal of Scientific Research, 26 (3): 437-442.

Davies, O.A. and Otene, B.B. (2009). Zooplankton community of Minichinda stream, Port Harcourt, RiversState, Nigeria. European J. Sci. Res., 26 (4): 490-498.

Davies, O.A. and Tawari, C.C. (2010). Season and tide effects on sediment characteristics of trans-okpokacreek, upper bonny Estuary, Nigeria. Agric. Biol. J. N. Am., 1 (2): 89-96.

Dawson, E.J. and Macklin, M.G. (1998). Speciation of heavy metals in floodplain and flood sediments: areconnaissance survey of the Aire Valley, West Yorkshire, Great Britain. Environ. Geochem. Health,20: 67-76.

De, A.K. (1999). Environmental Chemistry. New Age International (P) Ltd. Publishers, New Delhi, pp. 364.

De Bie, T., Declerck, S., Martens, K., De Meester, L. and Brendonck, L. (2008). A comparative analysis ofcladoceran communities from different water body types: patterns in community composition anddiversity. Hydrobiol., 597: 19–27.

De, S., Mishra, D.D., Bajpai, A. and Verma, N. (2009). Studies on soil status in and around Satpura thermalpower station Sarni (M.P.). Asian J. Expt. Sci., 23(3), 611-614.

de Graaf, G.J. and Marttin, F. (2003). Mechanisms behind changes in fish biodiversity in the floodplains ofBangladesh. Wetlands Ecol. Manag., 11: 273-280.

de Oliveira, M.D. and Calheiros, D.F. (2000). Flood pulse influence on phytoplankton communities of the southPantanal floodplain, Brazil. Hydrobiol., 421: 101-112.

de Oliveira, M.T. and Hardoim, E.L. (2010). Study of testacean assemblages (Protozoa: Rhizopoda) in touristicwaterfall regions of Chapada dos Guimarães National Park, Mato Grosso State, Brazil. Maringá, 32(4): 387-395.

Debusk, W.F., Reddy, K.R., Koch, M.S. and Wang, Y. (1994). Spatial distribution of soil nutrients in a northernEverglades marsh: water conservation Area 2A. Soil Sci. Soc. Amer. J., 58: 543-552.

Dejen, E., Vijverberg, J. Nagelkerke, L. and Sibbing, F. (2004). Temporal and spatial distribution ofmicrocrustacean zooplankton in relation to turbidity and other environmental factors in large tropicallake (L. Tana, Ethiopia). Hydrobiol., 513: 39-49.

Deka, R.M., Baruah, B.K. and Kalita, J. (2008). Physico-chemical characteristics of soils of Kapla Beel, afreshwater wetland in Barpeta District, Assam. Poll. Res., 27 (4): 695-698.

Delince, G. (1992). The ecology of the fish pond ecosystem with special reference to Africa. Text book, KluwerAcademic Publishers, pp. 230.

Page 18: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Dhembare, A.J. (2011). Statistical approaches for computing diversity and density of zooplankton with waterfactors in Mula Dam, Rahuri, MS, India. European J. Expt. Biol., 1 (2): 68-76.

Demirak, A., Yilmaz, F., Tuna, A.L. and Ozdemir, N. (2006). Heavy metals in water, sediment and tissues ofLeuciscus cephalus from a stream in south western, Turkey. Chemosphere, 63: 1451-1458, DOI:10.1016/j.chemosphere.2005.09. 033.

Deksne, R., Škute, A. and Paidere, J. (2010). Changes in structure of zooplankton communities in the middleDaugava (Western Dvina) over the last five decades. Acta Zoologica Lituanica, 20 (3):190-208, DOI:10.2478/v10043-010-0023-6

del Giorgio, P.A., Vinocur, A.L., Lombardo, R.J. and Tell, H.G. (1991). Progressive changes in the structureand dynamics of the phytoplankton community along a pollution gradient in a low land river—amultivariate approach. Hydrobiol., 224: 129–154.

Desai, P.V., Godsae, S.J. and, Halker, S.G. (1995). Physicochemical characteristics of Khanderpur river Goa,India. Poll. Res., 14: 447-454.

De Seve, M.A. (1993). Diatom bloom in the tidal freshwater zone of a turbid and shallow estuary, Rupert Bay(James Bay, Canada). Hydrobiol., 269/270: 225-233.

Devassy, V.P. and Goes, J.I. (1988). Phytoplankton community structure and succession in a tropical estuarinecomplex (central west coast of India). Estuarine, Coast. Shelf Sci., 27: 671-685.

Devassy, V.P. and Goes, J.I. (1989). Seasonal patterns of phytoplankton biomass and productivity in a tropicalestuarine complex (west coast of India). Proc. Ind. Acd. Sci. (Plant Sciences), 99: 485-501.

Deyab, M.A., Nemat, M.M. Alla and El-Adl, F.M. (2002). Phytoplankton diversity in some ponds at NewDamietta – Egypt. Egyptian J. Phycol., 3: 1-15.

Deyab, M.A. (2003). Phytoplankton as bioindicator for water quality in relationship with fish mortality in fishfarms at northeast of Damiatta-Egypt. Egyptian J. Phycol., 4 (1): 55-70.

DHV Consult. (1994). Enyong creek swamp rice study. Stage 1 Report. Vol.-1 Main report, AKADEP, Uyo,Nigeria, Akwa Ibom State.

Dadhich, N. and Saxena, M.M. (1999). Zooplankton as indicatiors of trophical status of some desert water nearBikanar. J. Environ. Poll., 6: 251-254.

Dejenie, T., Declerck, S.A.J., Asmelash, T., Risch, S., Mergeay, J., De Bie, T. and Meester, L.D. (2010).Cladoceran community composition in tropical semi-arid highland reservoirs in Tigray (NorthernEthiopia): A metacommunity perspective applied to young reservoirs. Limnologica – Ecol. Manag.Inland Waters, 42 ( 2): 137–143.

Din, Z.B. (1992). Use of aluminium to normalize heavy metal data from estuarine and coastal sediments ofStraits of Melaka. Mar. Poll. Bull., 24: 484-491.

Dirican, S., Musul, H. and Cilek, S. (2009). Some physico-chemical characteristics and Rotifers of CamligozeDam Lake Susehri, Sivas, Turkey. J. Anim. Vet. Adv., 8 (4): 715-719.

Dixit, S. and Tiwari, S. (2008). Impact assessment of heavy metal pollution of Shahpura Lake, Bhopal, India.Int. J. Environ. Res., 2 (1): 37-42.

Doddagoudar, S.F. (1989). An ecological study of phytoplankton of four fresh water bodies of Dharwad. Ph.D.Thesis, Karnatak University Dharwad.

Page 19: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Dodson S. and Ramcharan, C. (1991). Size-specific swimming behavior of Daphnia pulex. J. Plankton Res., 13:1367 – 1379.

Dodson, S.I. (1992). Predicting zooplankton species richness. Limnol. Oceanogr., 37: 848–856.

Dodson, S.I., Arnott, S.E. and Cottingham, K.L. (2000). The relationship in lake communities between primaryproductivity and species richness. Ecology, 81: 2662–2679.

Domotharan, P., Perumal, N.V., Perumal, P., Arumugam, M., Vijayalakshmi, S. and Balasubramanian, T.(2010). Seasonal variation of physico-chemical characteristics in Point Calimere coastal waters (SouthEast coast of India), Middle-East J. Sci. Res., 6 (4): 333-339.

Donahue, R.L., Miller, R.W. and Schickluna, J.C. (1983). Soils: An introduction to Soils and Plant Growth, 5th

Edn. Englewood, New York: Prentice Hall Inc.

Downing, J.A., Mcclain, M., Twilley, R., Melack, J.M., Elser, J., and Rabalais, N.N. (1999). The impact ofaccelerating land-use change on the N-cycle of tropical aquatic ecosystems: Current conditions andprojected changes. Biogeochem., 46: 109–148.

Draz, S. (1983). The texture and chemistry of Nile sediments in Rosetta branch. M. Sc. Thesis, Alex. Univ.

Dudgeon, D., Arthungton, A.H., Chang, W.Y.B. Davies, J., Humprey, C.L., Pearson, R.G. and Lam, P.K.S.(1994). Conservation and management of tropical Asian and Australian Inland waters: Problems,solutions and prospects. Mitt. Internat.Verein. Limnol. 24:369-386.

Duffus, J.H. (2002). Heavy Metals – A meaningless term. Pure Appl. Chem., 74: 793-807.

Dumont, H.J., Van de Velde, I. and Dumont, S. (1975). The dry weight estimate of biomass in selection ofCladocera, Copepoda and Rotifera from the plankton, periphyton and benthos of contincntal waters,Oecologia, 19: 75-97.

Dumont, H.J. (1994). On the diveristy of the Cladocera in the tropics. Hydrobiol., 272: 27-38.

Dutta, J., Chetia, M., Sarmah Baruah, J.P. and Misra, A.K. (2010). Assessment of Drinking Water Quality inDifferent Small Tea Gardens of Sonitpur District (Assam), India. Arch. Appl. Sci. Res., 2 (5): 226-238.

Duttagupta, S., Gupta, S. and Gupta, A. (2004). Euglenoid blooms in the floodplain wetlands of Barak Valley,Assam, North eastern India. J. Environ. Biol., 25 (3): 369-373.

Dwivedi, P. and Sonar, S. (2004). Evaluation of physico-chemical and biological characteristics of watersamples in water reservoir around Rono Hills, Doimmukh (Dist. Papum Pare), Arunachal Pradesh,Poll. Res., 23 (1): 101-104.

DWAF (1996). Water Quality Guidelines, Domestic Use. Vol. 1, 2nd Edn. Department of Water Affairs andForestry, Pretoria.

DWAF (1998). Umtata River Catchment Preliminary Framework for the Development of an IntegratedCatchment Management Plan. Report by Ninham Shand Consulting Engineers. Department of WaterAffairs and Forestry, Pretoria.

Eaton, A.D., Greenberg, A.E., and Clesceri, L.S. (2005). Standard Methods for the Examination of Water andWastewater, APHA-AWWA-WPCF. Inc, 20th Edition, Washington D.C.USA. pp.1169.

Edem, S.O. and Ndon, B.A. (2001). Evaluation of management properties of wetland soils of Akwa Ibom State,Nigeria for sustainable crop production. J. Appl. Chem. Agri. Res., 7: 26–36.

Page 20: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Edem, S.O. and Ndaeyo, N.U. (2009). Fertility status and management implications of wetland soils forsustainable crop production in Akwa Ibom State, Nigeria. Environ. Dev. Sustain., 11: 393–406, DOI:10.1007/s10668-007-9120-5.

Edicha, J. and Yahaya, S. (2010). Spatio temporal variation of soil carbon in Federal Capital Territory - Abuja,Nigeria. European J. Scientific Res., 42 (2): 220-231.

Edmondson, W.T. (1959). Fresh Water Biology. 2nd Edn. John Wiley and Sons, New York.

Edmondson, W.T. (1965). Reproductive rate of planktonic rotifers as related to food and temperature. Ecol.Manoir, 35: 61–111.

Edmondson, W.T. (1974). Preliminary Report for the North American Project- Lake washington. Workshop onMeasuring and Monitoring of Eutrophication, Canada Centre for Inland Waters, Burlington, Ontario.

Edmondson, W.T. and Litt, H. (1982). Daphnia in Lake Washington. Limnol. Oceanogr., 27: 272-293.

Edward, J.B. and Ugwumba, A.A.A. (2010). Physico-chemical parameters and plankton community of EgbeReservoir, Ekiti State, Nigeria. Res. J. Biol. Sci., 5 (5): 356-367.

Ehshan, M.A., Hossain, M.S. Razzaque, A. and Alam, M.S. (2000). Kua-an unusual but important fishery ofChanda beel. Bangladesh J. Zool., 28 (1): 69-74.

Egunjobi, J.K. (1971). Ecosystems processes in a stand of Ulex europaeus L. (11) recycling of chemicalelements in the ecosystem. J. Ecol., 59: 669–678.

Egborge, B.M. (1981). The composition, seasonal variation and distribution of zooplankton in Lake Asejire,Nigeria. Rev. Zoo. Afr., 95: 136-180.

Egborge, B.M., Onwudinjo, C.C. and Chigbu, P.C. (1994). Cladoceran of coastal rivers of Western Nigeria.Hydrobiol., 272: 39-46.

Eggs, J.K. and Aksnes, D.L. (1992). Silicate as regulating nutrient in phytoplankton competition. Mar. Ecol.Proc. Ser., 83: 281-289.

Ekelemu, K.J. and Zelibe, S.A.A. (2006). Aspects of hydrobiology of lake Ona in Sothern Nigeria 2: Physicaland chemical hydrology, J. Environ. Hydrol., 14: 1-10.

El Bouraie, M.M., El Barbary, A.A., Yehia, M.M. and Motawea, E.A. (2010). Heavy metal concentrations insurface river water and bed sediments at Nile Delta in Egypt. Suoseura – Finnish Peatland Society, Suo,61 (1): 1–12.

El-Bassat, R.A. and Taylor, W.D. (2007). The zooplankton community of Lake Abo Zaabal, a newly-formedmining lake in Cairo, Egypt. African J. Aqua. Sci., 32 (2): x–x.

El-Naggar, A., Mahmoud, S. and Tayel, S. (2009). Bioaccumulation of some heavy metals and histopathologicalalterations in liver of Oreochromis niloticus in relation to water quality at different localities along theRiver Nile, Egypt. World J. Fish Mar. Sci., 1 (2): 105-114.

El-Sherif, Z.M. and Gharib, S.M. (2001). Spatial and temporal patterns of phytoplankton communities inManzalah Lagoon. Bull. Nat. Inst. Oceanogr. Fisher., 27: 217-239.

El-Sheekh, M.M, Deyab M.A.I. Desouki, S.S. and Eladl, M. (2010). Phytoplankton composition as a responseof water quality in El Salam Canal Hadous drain and Damietta branch of river Nile, Egypt. Pak. J. Bot.,42 (4): 2621-2633.

Page 21: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Elkhatib, E.A. (1990). Simultaneous determination of low molecular weight organic acids in soil solution by ionchromatography. Zietschrift fur Pflanzenernaehrung und Bodenkunde, 153: 201-205.

EEC (1976). European Economic Community. European Community Standards for surface waters used forportable abstractions. Directive 76/464/EEC. EEC, Brussels.

Environmental Protection Agency (2006). "Wetlands Definitions." Feb. 22, 2006. (June 2, 2008)http://www.epa.gov/owow/wetlands/what/definitions.html.

Enwezor, W.O., Ohiri, A.C., Opuwaribo, E.E. and Udo, E.J. (1988). A review of fertilizer use on crops in southeastern zone of Nigeria. Lagos: Fertilizer procurement and Distribution Department.

Epstein, H.E., Lauenroth, W.K. and Burke, I.C. (1997). Effects of temperature and soil texture on ANPP in theUS Great Plains. Ecology, 78: 2628-2631.

Essien-Ibok, M.A., Akpan, A.W., Udo, M.T., Chude, L.A., Umoh, I.A. and Asuquo, I.E. (2010). Seasonality inthe physical and chemical characteristics of Mbo River, Akwa Ibom State, Nigeria, Nigerian J. Agri.Food Environ., 6 (1/2): 60-72.

Eshiett, E.T. (1994). The wetlands of Nigeria: distribution, characterization and traditional land use practice.Proc. 21st Ann. Conf. Soil Sci. Soc. Nigeria, 30th January - 4th February, 1994. University of Uyo, AkwaIbom State, pp. 1-19.

Espíndola, E.G., Matsumura-Tundisi, T. and Moreno, I.H. (1996). Estrutura da comunidade fitoplanctônica dalagoa Albuquerque (Pantanal Matogrossense). Mato Grosso do Sul, Brasil. Acta Limnol. Brasil., 8: 13–27.

Eswaran, H. van den Berg, E. Reich, P. and Kimble, J. (1995). Global soil carbon resources. In: Lal, R., Kimble,J., Levine, E. and Stewart, B.A. (Eds.) Soils and Global Change. Lewis Publishers, Boca Raton, pp. 27-43.

Esu, I.E. (1999). Fundamentals of Redology. Sterling- Hordon Publishers (Nig.) Ltd. University of Ibadan,Nigeria, pp. 54.

Everall, N.C. (1987). The effects of water hardness and pH upon the toxicity of zinc to Brown trout, Salmotrutta. Ph.D. Thesis, Trent Polytechnic Nottingham, U.K., pp. 242.

Evans, B., Townsend, C.R and Crowl (1993). Distribution and abundance of coarse woody debris in somesouthern New Zealand streams from contrasting forest catchments. New Zealand J. Mar. freshwaterRes., 27: 227-239.

Ewing, H.A. (2002). The influence of substrate on vegetation history and ecosystem development. Ecology, 83:2766-2781.

Ezekiel, E.N., Hart, A.I. and Abowei, J.F.N. (2011). The Distribution and Seasonality of Benthic Macro-Invertebrates in Sombreiro River, Niger Delta, Nigeria. Res. J. Appl. Sci. Engg Technol., 3 (4): 264-271.

Fajardo, G.I. (2006). Physical and chemical soil properties of ten Virginia Department of Transportation(VDOT) Mitigation Wetlands. M.Sc. Thesis, Crop and Soil Environmental Sciences, VirginiaPolytechnic Institute and State University.

Fakayode, S.O. (2005). Impact Assessment of Industrial Effluent on Water Quality of the Receiving Alaro Riverin Ibadan, Nigeria. AJEAM-RAGEE, 10:1-13.

Page 22: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Faragallah, H.M., Askar, A.I. Okbah, M.A. and Moustafa, H.M. (2009). Physico-chemical characteristics of theopen Mediterranean sea water far about 60 Km from Damietta harbor, Egypt. J. Ecol. Nat. Environ., 1(5): 106-119.

Fantin-Cruz, I., Pedrollo, O., Bonecker, C.C., Motta-Marques, D.D. and Loverde-Oliveira, S. (2010).Zooplankton Density Prediction in a Flood Lake (Pantanal – Brazil) Using Artificial Neural Networks.Int. Rev. Hydrobiol., 95 (4-5): 330-342.

FAO (1997). FAO Technical Guidelines for Responsible Fisheries Aquaculture Development – 5. Food andAgriculture Organization of the United Nations, Rome.

Fathi, A.A., Al-Fredan, M.A. and Youssef, A.M. (2009). Water quality and phytoplankton communities in LakeAl-Asfar, Al- Hassa, Saudi Arabia. Res. J. Environ. Sci., 3 (5): 504-513.

Fatoki, O.S., Muyima, N.Y.O. and Lujiza, N. (2001). Situation analysis of water quality in the Umtata Rivercatchment. Water SA, 27: 467-473.

Fennessy, M.S. and Mitsch, W.J. (2001). Effects of hydrology on spatial patterns of soil development in createdriparian wetlands. Wetlands Ecol. Manage., 9: 103-120.

Fernandes, L.D.A., Bonecker, S.L.C. Valentin, J.L. (2002). Dynamic of decapod crustacean larvae on theentrance of Guanabara Bay. Brazilian Arch. Biol. Technol., 45: 491-498.

Fernando, C.H. and Zankai, N.P. (1981). The rotifera of Malaysia and Singapore with remarks on some species.Hydrobiol., 78: 205-219.

Ferrara, O., Vagaggini, D. and Margaritota, F.G. (2002). Zooplankton abundance and diversity in LakeBracciano, Latium, Italy. J. Limnol., 61 (2): 169-175.

Fisher, T.R. and Parsley, P.E. (1979). Amazon lakes: water storage and nutrient stripping by algae. Limnol.Oceanogr., 24: 547-553.

Fisher, T.R., Doyle, R.D. and Peele, E.R. (1988a). Size-fractionated uptake and regeneration of ammonium andphosphate in a tropical lake. Verh. Int. Ver. Limnol., 23: 637–641.

Fleischer, S.A., Gustafson, A., Joelsson, A., Pansar, J. and Stibe, L. (1994). Nitrogen removal in created ponds.Ambio., 23: 349-357.

Forsberg, B.R., Devol, A.H., Richey, J.E., Martinelli, L.A. and Santos, H. (1988). Factors controlling nutrientconcentrations in Amazon floodplain lakes. Limnol. Oceanogr., 33: 41–56.

Forstuer, U. and Wittmann, G.T.W. (1979). Metal Pollution in Aquatic Environment. Springer-Verlag, Berlin,Heldelberg. pp. 486.

Frankovich, T.A., Gaiser, E.E., Zieman, J.C. and Wachnicka, A.H. (2006). Spatial and temporal distributions ofepiphytic diatoms growing on Thalassia testudinum Banks ex Köñig: Relationships to water quality.Hydrobiol., 569: 259-271.

Freedman, B. (1989). Environmental Ecology. Academic Press Inc., San Diego.

Frisch, D. (2002). Dormancy, dispersal and the survival of cyclopoid copepods (Cyclopoida, Copepoda) in alowland floodplain. Freshwater Biol., 47: 1269-1281.

Frisch, D. and Threlkeld, S.T. (2005). Flood-mediated dispersal versus hatching: early recolonisation strategiesof copepods in floodplain ponds. Freshwater Biol., 50: 323-330.

Page 23: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Froneman, P.W. (2001). Seasonal changes in zooplankton biomass and grazing in a temperate estuary, SouthAfrica. Estuar. Coast. Shelf Sci., 52: 543-553.

Froneman, P.W. (2002). Response of the biology to the three different hydrological phases in the temporarilyopen/closed Kariega estuary. Estuar. Coast. Shelf Sci., 55: 535-546.

Froneman, P.W. (2004). Zooplankton community structure and biomass in a southern African temporarilyopen/closed estuary. Estuar. Coast. Shelf Sci., 60: 125-132.

Frost, T.M., Fischer, J.M., Klug, J.L. Arnott, S.E. and Montz, P.K. (2006). Trajectories of zooplankton recoveryin the Little Rock Lake whole-lake acidification experiment. Ecol. Appl., 16: 353-367.

Frutos, S.M. (1998). Densidad y diversidad del zooplancton en los ríos Salado y Negro: Planicie del Río Paraná– Argentina. Rev. Brasil. Biol., 58 (3): 431-444.

Fryer, G. (1985). Crustacean diversity in relation to the size of water bodies: some facts and problems.Freshwater Biol., 15: 347–361.

Furch, K., Junk, W.J. Dieterich, J. and Kochert, N. (1983). Seasonal variation in the major cation (Na, K, Mg,and Ca) content of the water of Lago Carnal& o, an Amazon floodplain lake near Manaus, Brazil.Amazoniana, 8: 75-89.

Fuhrmann, J.J. (1998). Microbial Metabolism. Chapter 10. In: Sylvia, D.M., Fuhrmann, J.J., Hartel, P.G. andZuberer, D.A. (Eds.), Principles and Applications of Soil Microbiology. Prentice-Hall, Incorporated.Upper Saddle River, New Jersey. pp. 189-217.

Fulone, L.J., Vieira, L.C.G., Velho, L.F.M. and Lima, A.F. (2008). Influence of depth and rainfall on testateamoebae (Protozoa-Rhizopoda) composition from two streams in northwestern São Paulo state. ActaLimnologia Brasiliensia, 20 (1): 29-34.

Fulone, L.J., Lima, A.F., Alves, G. M., Velho, L.F.M. and Lansac-Tôha, F.A. (2005). Composição de amebastestáceas (Protozoa – Rhizopoda) de dois córregos do estado de São Paulo, incluindo novos registrospara o Brasil. Acta Scientiarum. Biol. Sci., 27 (2): 113-118.

Gabellone, N.A., Solari, L.C. and Claps, M.C. (2001). Planktonic and physicochemical dynamics of a markedlyfluctuating backwater pond as with a lowland river (Salado river, Buenos Aires), Argentina. LakesReserv. Res. Manag., 6: 133-142.

Gaedke, U., Seifried, A. and Kummerlin, R. (1998). The influence of weather conditions on the seasonalplankton development in a deep and large lake (Lake Constance). In: George, D.G. (Ed.), Managementof Lakes and Reservoirs during Global Climate Change. Kluwer Academic Publishers. Dordrecht.

Gaikwad, S.R., Tarot, S.R. and Chavan, T.P. (2004). Diversity of phytoplankton and zooplankton with respectto pollution status of river Tapi in North Maharashtra region. J. Curr. Sci., 5, 749-754.

Gaikwad, S.R., Ingle, K.N. and Thorat, S.R. (2008). Study of zooplankton patter and resting egg diversity ofrecently dried waterbodies in north Maharashtra region. J. Environ. Biol., 29: 353-356.

Gallardo, A. (2003). Spatial Variability of Soil Properties in a Floodplain Forest in Northwest Spain.Ecosystems, 6 (6): 564-576.

Gambrell, R.P. and Patrick, W.H. (1978). Chemical and microbiological properties of anaerobic soils andsediments. In: Plant life in anaerobic environments. Hook, D.D. and Crawford, R.M.M. (Eds.), AnnArbor: Ann Arbor Mich., Science Publishing. pp. 375–423.

Ganapathi, P.N. and Raman, A.V. (1973). Pollution in the Visakhapatnam Harbour. Curr. Sci., 42: 490-492.

Page 24: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Ganesh, P., Mohan, M., Subha, R., Monohar, M. and Vijayalakshmi, G.S. (2002). Bio-physico and chemicalassessment of Gadana and Rama rivers, Thirunelveli, India. Poll. Res., 21 (1): 73-76.

Ganesan, L. and Khan, R.A. (2008). Studies on the ecology of zooplankton in a floodplain wetland of WestBengal, In: Sengupta, M. and Dalwani, R (Eds.), Proceeding of the Taal 2007: The 12th World lakeConference. pp. 67-73

Gannon, J.E. and Stemberger, R.S. (1978). Zooplankton (especially crustaceans and rotifers) as indicators ofwater quality. Trans. Amer. Micros. Soc., 97: 1-16.

Guo, F., Jiang, G. and Yuan, D. (2007). Major ions in typical subterranean rivers and their anthropogenicimpacts in southwest karst areas, China. Environ. Geol., DOI: 10.1007/s00254-007-0665-2.

García de Emiliani, M.O. (1990). Variaciones diarias del fitoplancton (laguna ‘el Tigre’, llanura aluvial delParaná medio, Argentina). Revta Assoc. Cienc. Nat. Lit., 21: 49–60.

García de Emiliani, M.O. (1993). Seasonal succession of phytoplankton in a lake of the Paraná River floodplain,Argentina. Hydrobiol., 264: 101-114.

Garcia de Emiliani, M.O. (1997). Effects of water level fluctuations on phytoplankton in a river-floodplain lakesystem (Parana River, Argentina). Hydrobiol., 357: 1–15.

Garcia, P.R., Nandini, S., Sarma, S.S.S., Valderrama, E.R., Cuesta, I., Hurtado, M.D. (2002). Seasonalvariations of zooplankton abundance in the freshwater reservoir Valle de Bravo (Mexico). Hydrobiol.,467: 99-108.

Gardner, W.S., Cavaletto, J.F., Bootsma, H.A., Lavrentyev, P.J. and Troncone, F. (1998). Nitrogen cycling ratesand light effects in tropical Lake Maracaibo, Venezuela. Limnol. Oceanogr., 43: 1814–1825.

Garg, J.K., Singh, T.S. and Murphy, T.V.R. (1998). Wetlands of India. Space Application Centre (ISRO),Ahmedabad, India.

Garg, S.S. (2002). Seasonal fluctuation on physico-chemical parameters of River Mandakini, Chitrakoot, IndianJ. Environ. Prot., 22 (9): 986-991.

Garrido, A.V., Bozelli, R.L., Esteves, F., De, A. and Alves, L.S. (2003). Long-term patterns of the planktoniccladoceran community of Batata lake, Amazonia, Brazil. Acta Limnol. Bras., 15 (1): 41-53.

Gasse, F., Talling, J.F. and Kilham, P. (1983). Diatoms assemblages in East Africa: classification, distributionand ecology. Rev. Hydrobiol. Trop., 16: 3-34.

Gaston, K.J. (2000). Global patterns in biodiversity. Nature, 405: 220–227.

George, M.G. (1969). Seasonal trends in physico-chemical factors and plankton of freshwater pond and theirrole in fish culture. Hydrobiol., 33: 145-160.

George, J.P. (1997). Aquatic ecosystem structure, degradation, strategies for management. In: Recent advancesin ecological research M.P. (Ed) A.P.H. Publ. New Delhi. pp. 603.

George, A.D.I., Abowei, J.F.N. and Allison, M.E. (2010). The sediment characteristics of Okpoka Creek, NigerDelta, Nigeria. Asian J. Agric. Sci., 2 (1): 9-14.

Ghazy, M.M.E. and El-Senousy, W.M. (2008). Performance evaluation of a waste stabilization pond in a ruralarea in Egypt. American J. Environ. Sci., 4 (4): 316-325.

Gilbert, J.J. and Stemberger, R.S. (1985). Control of Keratella populations by interference from Daphnia.

Page 25: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Limnol. Oceanogr., 30: 180-188.

Gilbert, J.J. (1988). Suppression of rotifers by Daphnia: a review of the evidence, the mechanism and the effectsof zooplankton community structure. Limnol. Oceanogr., 33: 1286-1303.

Gilman, K. (1982). Nature conservation in Wetlands; Two small fen basins in western Britain, In: proceeding ofthe International Scientific Workshop on Ecosystem Freshwater Wetlands and Shallow Water bodies,July 12-26, 1981, Minsk-Pinsk -Tskhaltoubo, USSR, Centre of International Projects GKNT ; Moscow.pp. 290-310.

2007 Global Register of Major Flood Events, Dartmouth flood observatory homepage.

Godshalk, G.L. and Wetzel, R.G. (1978). Decomposition of aquatic angiosperms. I. Dissolved components.Aquat. Bot., 5 (4): 281-300.

Goher, M.E. (2002). Chemical studies on precipitation and dissolution of some chemical elements in LakeQuran, Ph.D. Thesis, Faculty of Science, Al-Azhar University, Cairo, Egypt.

Goldman, C. (2000a). Baldi Lecture. Four decades of change in two subalpine lakes. Verh. Internat. Verein.Limnol., 27: 7-26.

Goldman, C. (2000b). Management-driven limnological research. Arch. Hydrobiol. Spec. Issues Adanc. Limnol.,55: 257-269.

Goldman, C. (2003). Strategies for lake management in an increasing global environment. pp. 177-190. In:Kumugai, M. and Vincent, W.F. (Eds.). Freshwater management: global versus local perspectives.Springer. Stuttgart, pp. 233.

Goldman, C. and Amezaga, E. (1984). Primary productivity and precipitation at Castle Lake and Lake Tahoeduring twenty four years. Verh. Internat. Verein. Limnol., 22: 591-599.

Golterman, H.L., Clymo, R.S. and Ohnstad, M.A.M. (1978). Methods for Physical and Chemical Analysis ofFreshwaters. 2nd Edn. Blackwell Scientific Publishers. Oxford London.

Gondave, E.S. (1985). Supply of chloride in ground water. 2nd World Congr. Engg. Env., 7-9, New Delhi.

Gope, R. and Ray, D.C. (2012). Seasonal distribution of Isotomina thermophilan in a secondary succession anda homegarden in Cachar, Assam. J. Environ. Biol., 33: 181-186.

Gopal, B., Chauhan, M. (2001). South Asian wetlands and their biodiversity: the role of monsoons. In: Gopal,B., Junk, W.J. and Davis, J.A. (Eds.) Biodiversity in wetlands: assessment, function and conservation,Vol 2. Backhuys Publishers, Leiden, pp. 257–276.

Gopal, B. and Krishnamurthy, K. (1993). Wetlands of South Asia. In: Whigham, D.F., Dykyjova, D. and Hejny,S. (Eds.) Wetlands of the World. I. Inventory, ecology and management. Kluwer Academic Publisher,Dordrecht, pp. 345–414

Gopal, B. and Zutshi, D.P. (1998). Fifty years of hydrobiological research in India. Hydrobiol., 384: 267–290.

Gopinathan, C.P., Gireesh R. and Smitha, K.S. (2001). Distribution of chlorophyll ‘a’ and ‘b’ in the easternArabian sea (west coast of India) in relation to nutrients during post monsoon. J. Mar. Biol. Ass., India,43: 21-30.

Gorham, E. (1991). Northern peatlands: Role in the carbon cycle and probable responses to global warming.Ecol. Appl., 1: 182-195.

Page 26: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Gorham, E. (1998). The biochemistry of Northern peatlands and its possible responses to global warming. In:Woodwell, G.M. and Mackenzie, F.T. (Eds.) Biotic Feedbacks in the Global Climatic Systems. OxfordUniversity Press, New York, NY. pp. 169-187.

Gosselain, V., Descy, J.P. and Everbecq, E. (1994). The phytoplankton community of the River Meuse,Belgium: seasonal dynamics (year 1992) and the possible incidence of zooplankton grazing.Hydrobiol., 289: 179-191.

Goswami, M.M. (1985). Limnological investigations of tectonic lake of Assam, India and their bearing of fishproduction. Ph.D. Thesis, Gauhati University, Assam.

Goswami, M.M. and Goswami , N. (2001). Studies on productivity indicators in Mori Beel of Assam. Trop.Zool., 2/3: 1-9.

Gouda, Rajashree and Panigrahy, R.C. (1996). Ecology of phytoplankton in coastal waters off Gopalpur, eastcoast of India. Ind. J. Mar. Sci., 2: 13-18.

Goulden, C.E. (1969). Interpretative studies of cladoceran microfossils in lake sediments. Mitt. Internat. Verein.Limnol., 17: 43-55.

Govindasamy, C., Kannan, L. and Azariah, J. (2000). Seasonal variation in physico-chemical properties andprimary production in coastal water biotopes of Coromandel Coast, India, J. Environ. Biol., 21 (1): 1-7.

Govindan and Sundaresan, B.B. (1979). Seasonal succession of algal flora in polluted region of Adyar River.Indian J. Environ. Health, 21: 131-142.

Gregory, S.E. and Ibia, T.O. (2009). Characteristics and constraints of some river floodplains to crop productionin southeastern Nigeria. Agri. J., 4 (2): 103-108.

Grigorszky, I., Kiss, K.T., Béres, V., Bácsi, I., M-Hamvas, M., Máthé, C., Vasas, G., Padisák, J., Borics, G.,Gligora, M. and Borbély, G. (2006). The effects of temperature, nitrogen, and phosphorus on theencystment of Peridinium cinctum, Stein (Dinophyta). Hydrobiol., 563: 527–535.

Green, J. (1963). Zooplankton of the river Sokoto, The Rhizopoda Testacea. Proc. Zool. Soc. London 141: 497–514.

Green, J. (1975). Freshwater ecology in the Mato Grosso, Central Brazil, IV: Associations of testate Rhizopoda.J. Nat. Hist., 9: 545–560.

Green, A.J., Fuentes, C., Moreno-Ostos, E., da Silva, S.L.R. (2005). Factors influencing cladoceran abundanceand species richness in brackish lakes in Eastern Spain. Ann. Limnol. - Int. J. Lim., 41 (2): 73-81.

Griffiths, R.P., Entry, J.A., Ingham, E.R., and Emmingham, W.H. (1997). Chemistry and microbial activity offorest and pasture riparian-zone soils along three Pacific Northwest streams. Plant and Soil, 190:169–178.

Grobbelaar, J.U. (1983). Availability to algae of N. & P adsorbed on suspended solids in turbid waters of theAmazon River. Arch. Hydrobiol., 96: 302-316.

Gruberts, D., Druvietis, I., Parele, E., Paidere, J., Poppels, A. and Škute, A. (2007). Impact of hydrology onaquatic communities of floodplain lakes along the Middle Daugava (Latvia). Hydrobiol., 584: 233–237.

Guelda, D.L., Koch, R.W. Jack J.D. and Bukaveckas, P.A. (2005). Experimental evidence for density-dependenteffects and the importance of algal production in determining population growth rates of riverinezooplankton. River Res. Appl., 21: 595 – 608.

Page 27: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Gulatti, R.D. (1990). Structural and grazing responses of zooplankton community to biomanipulation of someDutch water bodies. Hydrobiol., 200/201: 99-118.

Gulati, R.D. and Wurtz-Schuiz (1980). Remarks on the present status of limnology in India based mainly on theIndian publications in hydrobiologia and suggestions for future approach. Hydrobiol., 72: 211–222.

Gurumayum, S.D., Daimari, P., Goswami, B. S. J., Sarkar, A. and Choudhury, M. (2002). Physico-chemicalqualities of water and plankton of selected rivers in Meghalaya. J. Inland Fisher. Soc. India, 34 (2):36–42.

Gunkel, G. (2000). Limnology of an equatorial high mountain lake in Ecuador, Lago San Pablo. Limnologica,30: 113–120, DOI:10.1016/S0075-9511(00)80005-5.

Güntzel, A.M., Panarelli, E.A., da Silva, W.M. and Roche, K.F. (2010). Influence of connectivity on Cladoceradiversity in oxbow lakes in the Taquari River floodplain (MS, Brazil). Acta Limnologica Brasiliensia,22 (1): 93-101, DOI: 10.4322/actalb.02201012.

Gupta, A., Gupta, S. and Michael, R.G. (1994). Seasonal abundance and diet of Cloeon sp. (Ephemeroptera:Baetidae) in a northeast Indian lake. Arch. Hydrobiol., 130 (3): 349-357.

Gupta, A. (1996). Heavy metals in water, periphytonic algae, detritus and insects from two streams in Shillong,Northeastern India. Environ. Monit. Assess., 40: 215-223.

Gupta, M.C. and. Sharma, L.L (1993). Diel variations in selected water quality parameters and zooplankton in ashallow pond of Udaipur, Rajasthan. J. Ecobiol., 5: 139-142.

Gupta, A. and Gupta, S. (1995). Cadmium and nickel contamination of sediment and biota of river Barak fromlime Sludge waste of a paper mill at Panchgram, Assam. Proceeding of 4th Nat. Symp. Environ. BRNS.DAE. Madras. pp. 154-155.

Gupta, B.K. and Gupta, R.R. (1999). Physico-chemical and biological study of drinking water in Satna, MadhyaPradesh– 485 001 (India), Poll. Res., 18 (4): 523-525.

Gupta, P.K. (2004). Methods in Environmental Analysis — Water, Soil, and Air, Agrobios, Jodhpur (India).

Gupta, A. (2004). Drinking Water Quality in Barak Valley, Assam, North East India: Prioritizing ManagementOptions. In: Proceedings of the 2nd APHW Conference. Asia Pacific Association of Hydrology andWater Resources, Japan, 1: 621-627.

Gupta, S.K., Savita, D. and Tiwari, M.S.S. (2005). Assessment of heavy metals in surface water of lower lake,Bhopal, India. Poll. Res., 24:805-808.

Gupta, S., Buragohain, K. and Bhuiyan, J.R. (2008). Importance of ponds in integrated water resourcemanagement in Barak Valley, Assam, India, Poll. Res., 27 (3): 587-590.

Gupta, R.D., Arora, S., Gupta, G.D. and Sumberia, N.M. (2010). Soil physical variability in relation to soilerodibility under different land uses in foothills of Siwaliks in N-W India. Trop. Ecol., 51 (2): 183-197.

Guy, D. (1992). The ecology of the fish pond ecosystem with special reference to Africa, Pergamon press. pp.220-230.

Hall, A., Valente, I.M.C. and Davies, B. (1977). The Zambezi River in Mozambique: The Physico-chemicalStatus of the middle and Lower Zambezi Prior to the closure of the Cubora Bassa Dam. FreshwaterBiol. 7: 187- 206.

Page 28: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Hakanson, L., Boulin, V.V. and Ostapenia, A. (2003). The influence of biomanipulations (fish removal) on thestructure of lake food web, case studies using Lake Web-model. Aqua. Ecol., 37: 47-68.

Hamilton, S.K. and Lewis, W.M. Jr. (1987). Causes of seasonality in the chemistry of a lake on the OrinocoRiver floodplain, Venezuela. Limnol. Oceanogr., 32: 1277–1290.

Hamilton, S.K., Lewis Jr., W.M., Sauders III, J.F. (1990). Zooplankton abundance and evidence for its reductionby macrophyte mats in two Orinoco floodplain lakes. J. Plankton Res., 12: 345-363

Hamilton S.K., Lewis W.M. and Sippel, S.J. (1992). Energy sources for aquatic animals in the Orinoco Riverfloodplain: evidence from stable isotopes. Oecologia, 89: 324–330.

Harshey, D.K., Shrivastav, A.K. and Patil, S.G. (1987). Studies on ecology of freshwater Ostracoda part IIpopulation ecology in. Balsagar tank, Jabalpur M. P. India. J. Curr. Biosci., 4 (4): 127–134.

Hansson, L., Gustafsson, S., Rengefors, K. and Bomark, L. (2007). Cyanobacterial chemical warfare affectszooplankton community composition. Freshwater Biol., 52: 1290-1301.

Happey-Wood, C.M. (1988). Ecology of freshwater planktonic green algae. In: Sandgren, C.D. (Ed.), Growthand reproductive strategies of freshwater phytoplankton. Cambridge Univ. Press, pp. 175–226

Hart, P.J.B. and Reynolds, J.D. (2002). Handbook of Fish Biology and Fisheries. Blackwell Publishing. U.K.

Haslam S.M. (1990). River pollution: An Ecological Perspective. Belhaven Press. London, pp. 253.

Hassan, F.M., Saleh, M.M. and Salman, J.M. (2010). A study of physico-chemical parameters and nine heavymetals in the Euphrates River, Iraq. E-J. Chem., 7 (3): 685-692.

Hardin, G. (1968). The Tragedy of the Commons. Science, 162: 1143-1248

Harikumar, P.S., Nasir, U.P., Mujeebu, M.P.R. (2009). Distribution of heavy metals in the core sediments of atropical wetland system. Int. J. Environ. Sci. Tech., 6 (2): 225-232.

Hartel, P.G. (2005). The soil habitat. In: Sylvia, D.M., Fuhrmann, J.J., Hartel, P.G. and Zuberer, D.A. (Eds.),Principles and Applications of Soil Microbiology. 2nd Edn. Pearson Prentice Hall. Upper Saddle River,New Jersey. pp. 26-53.

Havel, J.E. and Shurin, J.B. (2004). Mechanisms, effects, and scales of dispersal in freshwater zooplankton.Limnol. Oceanogr., 49: 1229–1238.

Havens, K.E. (2002). Zooplankton structure and potential food web interactions in the plankton of a subtropicalchain of lakes. Scientific World, 8: 926–942.

Hazarika, S. (2010). The study of the impact of flood in the wetlands of Assam, North eastern region of India.The Bioscan, 1: 269 -281.

He, Q. and Walling, D.E. (1998). An investigation of the spatial variability of the grain size composition offloodplain sediments. Hydrol. Processes, 12: 1079-1094.

Hellawell, J.M. (1986). Biological Indicators of Freshwater Pollution and Environmental Management.Elsevier, London.

Heiler, G., Hein, T., Schiemer, F. and Bornette, G. (1995). Hydrological connectivity and flood pulses as thecentral aspects for the integrity of a river-floodplain system. Reg. Rivers: Res. Manag., 11: 351-361.

Page 29: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Hein, T., Baranyi, C., Heiler, G., Holarek, C., Riedler, P. and Schiemer, F. (1999). Hydrology as a major factordetermining plankton development in two floodplain segments and the River Danube, Austria. Arch.Hydrobiol., (Suppl.) 115 (3): 439-452.

Hein, T., Baranyi, C., Herndl, G.J., Wanek, W. and Schiemer, F (2003). Allochthonous and autochthonousparticulate organic matter in floodplains of the River Danube: the importance of hydrologicalconnectivity. Freshwater Biol., 48:220–232, DOI:10.1046/j.1365-2427.2003.00981.x.

Hein, T., Baranyi, C., Reckendorfer, W. and Schiemer, F. (2004). The impact of surface water exchange on thenutrient and particle dynamics in side-arms along the River Danube, Austria. Sci. Total Environ., 328(1-3): 207-218.

Heip, C.H.R., Goosen, N.K., Herman, P.M.J., Kromkamp, J., Middelburg, J.J. and Soetaert, K. (1995).Production and consumption of biological particles in temperate tidal estuaries. Oceanogr. Mar. Biol.Annu. Rev., 33: 1–149.

Henry, L. and Semili, P. (2005). Levels of heavy metal pollution in water and sediments in Simiyu wetland ofLake Victoria Basin, Tanzania. In: Proc. 11th World Lake Conf. Nairobi, Kenya. 2: 549-553.

Hesthagen, T., Berger, H.M., Schartau, A.K.L., Nøst, T., Saksgård, R. and Fløystad, L. (2001). Low success ratein re-establishing European perch in some highly acidified lakes in southernmost Norway. Water AirSoil Poll., 130: 1361-1366.

Hinder, B., Gabathuleri, M., Steiner, B., Hanselmann, K. and Preisig, H.R. (1999). Seasonal dynamics andphytoplankton diversity in high mountain lakes (Jöri lakes, Swiss Alps). J. Limnol., 59: 152-161.

Hirose, M., Nishibe, Y., Ueki, M. and Nakano, S. (2003). Seasonal changes in the abundance of autotrophicpicoplankton and some environmental factors in hypereutrophic Furuike pond. Aqua. Ecol., 37: 37-43.

Higgins, T., Kenny, H. and Colleran, E. (2007). Plankton communities of artificial lakes created on Irishcutaway peatlands. Biology and Environment. Proc. Royal Irish Acad., 107B (2): 77-85.

Hildrew, A.G. (1985). A quantitative study of the life history of a fairy shrimp (Branchiopoda: Anostraca) inrelation to the temporary nature of its habitat, a Kenyan rainpool. J. Animal Ecol., 54: 99-110.

Hobbelen, P.H.F., Koolhaas, J.E. and van Gestel, C.A.M. (2004). Risk assessment of heavy metal pollution fordetritivores in floodplain soils in the Biesbosch, The Netherlands, taking bioavailability into account.Environ. Poll., 129 (3): 409-419.

Hobaek, M., Manca, M. and Andersen, T. (2002). Factors influencing species richness in lacustrinezooplankton. Acta Oecologica, 23: 155–163.

Hoch, M.P., Dillon, K.S. Coffin, R.B. and Cifuentes, L.A. (2008). Sensitivity of bacterioplankton nitrogenmetabolism to eutrophication in sub-tropical coastal water of Key West. Florida. Mar. Poll. Bull., 56:913-926.

Hodson P.V. (1986). Water quality criteria and the need for biochemical monitoring of contaminant effects onaquatic ecosystem. In: Hart, B.T. (Ed.), Water Quality Management: Freshwater Eco-toxicity inAustralia, Melbourne Water Studies Center, pp. 7-21.

Hopkinson, C.S. (1992). A comparison of ecosystem dynamics in freshwater wetlands. Estuaries, 15: 549–562.

Horvatić, J., Mihaljević, M. and Stević, F. (2003). Algal growth potential of Chlorella kessleri FOTT et NOV.in comparison with in situ microphytoplankton dynamics in the water of Lake Sakadaš marshes.Periodicum Biologoru, 105: 307–312.

Page 30: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Host, G.E. and Pregitzer, K.S. (1992). Geomorphic influences on ground-flora and overstory composition inupland forests of Northwestern Lower Michigan. Canadian J. Forest Res., 22: 1547-1555.

Hughes, D.A. (1980). Floodplain inundation: processes and relationships with channel discharges. EarthSurface Processes, 5: 297-304.

Huovinen, P.S., Brett, M.T. and Goldman, C.R. (1999). Temporal and vertical dynamics of phytoplankton netgrowth in Castle Lake, California. J. Plankton Res., 21: 373-385.

Howeler, R.H. and Bouldin, D.R. (1971). The diffusion and consumption of oxygen in submerged soils. SoilSci. Soc. Amer. J., 35: 202-208.

Huisman, J. (1999). Population dynamics of light-limited phytoplankton: microcosm experiments. Ecology, 80:202-210.

Hussain, M.F. and Ahmad, I. (2002). Variability in physico-chemical parameters of Pachin River (Itanagar).Indian J. Environ. Health, 329 – 336.

Hussain, M.A., Haque, M.E. and Matin, M.A. (2002). Effect of tillage and manuring on some physicalproperties of old Brahmaputra floodplain soil. Online J. Biol. Sci., 2 (4): 262-266.

Hutchinson, G.E. (1957). A Treatise on Limnology. Vol.-1 Geography, physics and chemistry. John Wiley andSons, New York, pp. 1015.

Hutchinson, G.E. (1967). A Treatise on Limnology. Vol.- II. Introduction to lake Biology and theLimnoplankton, john Willey and Sons. Inc, New York, pp. 1115.

Hulyal, S.B. and Kaliwal, B.B. (2009). Dynamics of phytoplankton in relation to physico-chemical factors ofAlmatti reservoir of Bijapur District, Karnataka State. Environ. Monit. Assess., 153: 45–59, DOI:10.1007/s10661-008-0335-1

Huszar, V.L.M. (1994). Fitoplâncton de um Lago Amazônico impactado por rejeito de bauxita (Lago Batata,Pará, Brasil): estrutura da comunidade, flutuaçóes espaciais e temporais. Ph.D. Thesis, UFSCar-PPG-ERN, São Carlos, pp. 219.

Hujare, M.S. (2005). Hydrobiologial studies on some water reservoirs of Hatkanangale Tahsil (Maharashtra).Ph.D. Thesis, Shivaji University, Kolhapur.

Hynes H.B.N. (1960). The Biology of Polluted Waters. Liverpool University Press, Liverpool. pp.1 – 202.

Hynes, H.B.N. (1970). The Ecology of Running Water. Univ. of Toronto Press, Toronto.

Hynestrand, P., Blomqvist, P. and Pettersson, A. (1998). Factors determining cyanobacterial success in aquaticsystems—a literature review. Arch. Hydrobiol., 51: 41–62.

Ibañez, M.S.R. (1998). Phytoplankton composition and abundance of a central Amazonian floodplain lake.Hydrobiol., 362: 78–83.

ICMR (1975). Manual of standards of quality for drinking water supplies, Special Report Series 44, 2nd Edn.

Idowu, E.O. Ugwumba, A.A.A. (2005). Physical, chemical and benthic faunal characteristics of a southernNigerian reservoir. The Zoologist, 3: 15-25.

Ideriah, T.J.K., Amachree, O. and Stanley, H.O. (2010). Assessment of water quality along Amadi Creek in PortHarcourt Nigeria. Scientia Africana, 9 (1): 150-162.

Page 31: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Idodo-Umeh, G. (2002). Pollution assessment of Olomoro water bodies, using physical, chemical and biologicalindices. Ph.D. Thesis. University of Benin, Benin City, Nigeria. pp. 485.

IEPA (1978). Assessment and Classification of Illinois Lakes. Vol. II. Illinois Environmental Protection Agency,Springfield, IL.

Ikusemiju, K. and Olaniyan, C.I.O. (1977). The food and feeding habit of the catfishes. Claris walkeri, C.filamentous (Boulonger) in the Lekki Lagoon, Nigeria. J. Fish Biol., 10: 105-112.

Iqbal and Katariya, H.C. (1995). Physico-chemical analysis and water quality assessment of upper Lake ofBhopal, Indian. J. Environ. Prot., 15 (7): 504-509.

Iqbal, F., Raza, N., Ali, M. and Athar, M. (2006). Contamination of Kallar Kahar Lake by Inorganic Elementsand Heavy Metals and their Temporal Variations. J. Appl. Sci. Environ. Manag., 10 (2): 95 – 98.

Indabawa, I.I. (2009). Studies on limnological parameters and phytoplankton dynamics of Nguru Lake, YobeState Nigeria, Biosci. Res. Comm., 21 (4):183-188

Imai, H., Chang, K.H., Kusaba, M. and Nakano, S.I. (2009). Temperature-dependent dominance of Microcystis(Cyanophyceae) species: M. aeruginosa and M. wesenbergii. J. Plankton Res., 31 (2): 171-178.

Imoobe, T.O.T and Egborge, A.B.M. (1997). The composition, distribution and seasonal variation of Crustaceain Jamieson River, Southwest Nigeria. Trop. Freshwater Biol., 6:49-63.

Irfan, S. and Shardendu (2009). Dynamics of nitrogen in subtropical wetland and its uptake and storage by Pistiastratiotes. J. Environ. Biol., 30 (6): 977-981.

ISI (1991). Indian standard specification for drinking water IS: 10500, ISI, New Delhi.

Isirimah, N.O. (1994). Mineralogy, chemistry and fertility of Nigerian coastal soils. 21st Ann. Conf. Soil Sci.Soc. Nigeria, University of Uyo. Jan. 31st – 4th February, 1994.

Islam A.K.M.N. (1969). A preliminary report on the phytoplankton and other algal flora of Chittagong Hilltracts. J. Asiatic Soc. Pakistan., 14: 343–363.

Islam A.K.M.N. (1991). Phycology. In: Islam, A.K.M.N. (Ed.), Two centuries of plant studies in Bangladeshand adjacent regions. Asiatic Soc. Bangladesh, Dhaka, pp. 97–154.

Islam, A.K.M.N., Nurul, M. and Islam, M.S. (1993). Hydrophytes Eutrophication and Diseases. In: Tilzar,M.M.S.I. (Eds). Hypertrophic and polluted freshwater eco-systems. Ecological bases for water resourcemanagement. pp. 173-178. Proc. Int. Symp. Limnol., 25-28 November, 1991. University of Dhaka,Bangladesh.

Islam, S.N. (2007). Physicochemical condition and occurrence of some zooplankton in a pond of RajshahiUniversity. Res. J. Fish. Hydrobiol., 2 (2): 21-25.

Izaguirre, I., O’Farrell, I. and Tell, G. (2001). Variation in phytoplankton composition and limnological featuresin a water-water ecotone of the Lower Parana´ Basin (Argentina). Freshwater Biol., 46: 63–74.

Izonfuo, L. W.A. and Bariweni, A. P (2001). The Effect of Urban Runoff Water and Human Activities on somephysico-chemical parameters of the Epie Creek in the Niger Delta. J. Appl. Sci. Environ. Mgt., 5 (1):47-55.

Jafari, N. and Alavi, S.S. (2010). Phytoplankton community in relation to physico-chemical characteristics ofthe Talar River, Iran. J. Appl. Sci. Environ. Manage., 14 (2): 51 – 56.

Page 32: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Jameel, A. (1998): Physico-chemical studies in Vyyakondan Channel water of Cauvery, Poll. Res., 17 (2): 111-114.

James, C.S., Thoms, M.C. and Quinn, G.P. (2008). Zooplankton dynamics from inundation to drying in acomplex ephemeral floodplain-wetland. Aquat. Sci., 70: 259 – 271, DOI: 10.1007/s00027-008-8034-0

Jain, C.K., Singhal, D.C. and Sharma, M.K. (2002). Survey and characterization of waste effluents pollutingriver Hindon, Indian J. Environ. Prot., 22 (7): 792-799.

Jana, B.B. (1973). Seasonal periodicity of plankton in a fresh water pond in West Bengal, India, Hydrobiol., 58:127-143.

Jana, B.B. (1998). State-of-the-art of lakes in India: an overview. Arch. Hydrobiol., Supplementba¨nde(Monographic Studies) 121: 1–89.

Jappesen, E., Jensen, J.P. and Sondergaard, M. (2002). Organization and inland water aquaculture institute ofIran Response of Phytoplankton, Zooplankton and Fish (Bandar Anzali). to Re-Oligotrophication an11-year study of 23 Danish Lakes. Aquat. Ecosyst. Health Manag., 5: 31-43.

Jayasinghe, R.A., Bandara, N.J.G.J. and Mohotti, K.M. (2011). Contamination Sources of Bomuruella Reservoirat Nuwara Eliya. J. Environ. Prot., 2: 271-279, DOI:10.4236/jep.2011.23030

Jayaraman, P.R. (2002). Impact of environmental factors on the macro flora of a lotic ecosystem – KarmanaRiver. A case study. Ph.D. Thesis. University of Kerala, India.

Jayaraman P.R, Ganga-Devi, T. and Vasudena-Nayar, T. (2003). Water quality studies on Karamana river,Thiruvananthapuram District South Kerela, India. Poll. Res., 22 (1): 89-100.

Jekatierynczuk-Rudczyk, E., Górniak, A., Zieliński, P. and Dziemian, J. (2002). Daily Dynamics of WaterChemistry in a Lowland Polyhumic Dam Reservoir, Polish J. Environ. Stud., 11 (5): 521-526.

Jeppesen, E., Madsen, E.A., Jensen, J.P. and Anderson, N.J. (1996). Reconstructing the past density ofplanktivorous fish and trophic structure from sedimentary zooplankton fossils: a surface sedimentcalibration data set from shallow lakes. Freshwat. Biol., 36: 115-127.

Jeppesen, E., Jensen, J., Skovgaard, H. and Havidt, C. (2001). Changes in the abundance of planktivorous fish inLake Skanderborg during the past two centuries – a palaeoecological approach. Palaeogeogr.Palaeoclimatol. Palaeoecol., 172: 143–152.

Jha, P. and Barat, S. (2003). Hydro biological study of lake Mirik in Darjeeling, Himalayas. J. Environ. Biol., 24(3): 339-344.

Jhingran, V.G. (1952). General length weight relationship of three major carps of India. Proc. Nat, Inst. Sci.India 18B, (5): 449-460.

Jhingran, V.G. (1975). Fish and fisheries of India. Hindustan Publ. Corp. (India). Delhi, pp. 954.

Jiang, J., Huang, Y. and Zong, L. (2001). The influence of physicochemistry properties on CH4 emission. J. SoilEnviron., 10 (1): 27– 29 (in Chinese).

Jindal, R. and Rumana, H.S. (2000). Biomonitoring of water pollution in Western Yamuna Canal atYamunanagar, Haryana. J. Punjab Acad. Sci., 2 (1): 177–182.

Jindal, R. and Sharma, C. (2011). Studies on water quality of Sutlej River around Ludhiana with reference tophysicochemical parameters. Environ. Monit. Assess., 174: 417–425, DOI: 10.1007/s10661-010-1466-8.

Page 33: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Johansson, J.O. and Lewis, R.R. (1992). Recent improvements in water quality and biological indicators inHillsborough Bay, a highly impacted subdivision of Tampa Bay, Florida, USA. Sci. Total Environ.(Suppl.), pp. 1199-1215.

Jocque, M., Vanschoenwinkel, B. and Brendonck, L. (2010). Anostracan monopolisation of early successionalphases in temporary waters? Fundam. Appl. Limnol., Arch. Hydrobiol., 176 (2): 127–132.

Johnston, C.A. (1993). Mechanisms of water wetland water quality interaction. In: Moshiri, G.A. (Ed.),Contructed wetlands for water quality improvement. London: Lewis Publishers Boca Raton.

Jongman, R.H.G., ter Braak, C.J.F. and van Tongeren, O.F.R. (1995). Data Analysis in Community andLandscape Ecology. Cambridge University Press. Cambridge.

Jones, G.J., Falconer, I.R. and Wilkins, R.M. (1995). Persistence of cyclic peptide toxins in dried cyanobacterialcrusts from Lake Mokoan, Australia. Environ. Toxicol. Water Quality, 10: 19-24.

Joo, G.J. (1990). Limnological studies of oxbow lakes in the southeastern United States: morphometry,physicochemical characteristics and patterns of primary productivity. Ph.D. Thesis, Department ofBiology, Graduate School of University of Alabama, Tuscaloosa, USA

José de Paggi, S. (1980). Campaña limnológica ‘Keratella I’ en el río Paraná medio: zooplancton de ambienteslóticos. Ecología, 4: 69–75.

José de Paggi, S.B. (1993). Composition and seasonality of planktonic rotifers in limnetic and littoral regions ofa floodplain lake (Paraná river system). Rev. Hydrobiol. Trop., 26:53–63.

José de Paggi, S. (1995). Vertical distribution and diel migration of rotifers in a Paraná River, floodplain lake.Hydrobiol., 310: 87–94.

Jose de Paggi, S., Paggi, J., Collins, P., Collins, J. and Graciela, B. (2008). Water quality and zooplanktoncomposition in a receiving pond of the stromwater runoff from an urban catchment. J. Environ. Biol.,29: 693-700.

Jose de Paggi, S. and Paggi, J.C. (2008). Hydrological connectivity as a shaping force in the zooplanktoncommunity of two lakes in the Paraná river floodplain. Internat. Rev. Hydrobiol., 93 (6): 659-678.

Joseph K.B., Richard, W.S. and Daniel E.T. (1993). An introduction to water chemistry in freshwateraquaculture. NRAC Fact sheet: 170.

Joshi, B.D. and Bisht, R.C.S. (1993). Some aspects of physico-chemical characteristics of Western Ganga Canalnear Jwalapur at Haridwar. Himalayan J. Environ. Zool., 7: 76–82.

Joshi, D.M., Bhandari, N.S., Kuma, A and Agrawal, N. (2009). Statistical analysis of physico chemicalparameters of water of river Ganga in Haridwar district, RASÃYAN J. Chem., 2 (3): 579-587.

Junk, W.J. (1980). Áreas inundáveis - um desafio para limnologia. Acta Amazonica, 104: 775-795.

Junk, W.J. (1982). Amazonian floodplains: Their ecology, present and potential use. In: Proceedings of theInternational Scientific Workshop on Ecosystem Dynamics in Freshwater Wetlands and Shallow WaterBodies. Scientific Committee on Problems of the Environment (SCOPE), United Nations EnvironmentProgram (UNEP), New York, pp. 98–126.

Junk, W.J. and Howard-Williams, C. (1984). Ecology of aquatic macrophytes in Amazonia. In: Sioli, H. (Ed.),The Amazon: Limnology and Landscape Ecology of a Mighty Tropical River and Its Basin. Dr. W.Junk Publishers, Dordrecht, The Netherlands, pp. 269–309.

Page 34: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Junk, W.J, Bayley, P.B. and Sparks, R.F. (1989). The flood-pulse concept in river floodplain systems. In:Dodge, D.P. (Ed.), Proceeding of the International Large River Symposium Toronto, Ontario.September, 14-21, 1986. Canadian Publication of Fisheries and Aquatic Sciences -106 Department ofFisheries and Oceans, Ottawa, Ontario, Canada. pp. 110-127.

Junk, W.J. (1997). Structure and function of the large central Amazonian Rive floodplains: Synthesis anddiscussion. In: Junk, W.J. (Ed.), The Central Amazonian Floodplain. Springer-Verlag, Berlin, pp. 455–472.

Junk, W.J. (1999). The flood pulse concept of large rivers: learning from the tropics. Arch. Hydrobiol., (Suppl.)Large Rivers, 115 (3): 261-280.

Junk W.J. and Wantzen K.M. (2004). The flood pulse concept: new aspects, approaches and applications – anupdate. In: Welcomme, R.L. and Petr, T. (Eds.), 2nd Int. Symp. Manag. Large Rivers Fisher., FAO andMekong River Commission, Bangkok, Thailand. pp. 117–140.

Jung, M.C. (2001). Heavy metal contamination of soils and waters in and around the Imcheon Au–Ag mine,Korea. Appl. Geochem., 16: 1369-1375.

Kudari, V.A. and Kanamadi, R.D. (2008). Impact of changed tropic status on the zooplankton composition insix water bodies of Dharwad district, Karnataka state (South India). Environ. Monit. Assess., 144: 301 –313.

Kairu, J.K. (2001). Wetland-use and impact on Lake Victoria, Kenya region. Lakes Reservoirs: Res. Mgmt., 6:117-125.

Kähkönen, M.A. (2003). Biodegradation activities in coniferous forest soils and freshwater sediments. Ph.D.Thesis, Department of Applied Chemistry and Microbiology University of Helsinki, Finland.

Kaliyamurthy, M. (1973). Observation on the transparency of waters of the Pulicat Lake with particularreference to plankton productivity, Hydrobiol., 41 (1): 3-11.

Kamalak Kannan, G. (2000). Physico-chemical and ecological study of River Ganga near Barauni industrialarea 1994-1998. In: Trivedy, R.K. (Ed), Pollution and Biomonitoring of Indian Rivers. ABDPublishers, Jaipur, (India).

Kamal, D., Khan, A.N., Rahman, M.A. and Ahmed, F. (2007). Study on the physico-chemical properties ofwater of Mouri River, Khulna, Bangladesh, Pak. J. Biol. Sci., 10 (5): 710-717.

Kamat, S. and Sima, V. (2000): Hydrobiological studies of two temple ponds in Ponda Taluka Goa. Eco.Environ. Conserv., 6: 361-362.

Kannan, V. (1978). The limnology of Sathiar: A freshwater impoundment. Ph.D. Thesis, Madurai KamarajUniversity, Madurai.

Kannan, K. (1991). Fundamentals of Environmental Pollution. S.Chand and Company Ltd., New Delhi.

Karikal, S.M. (1995). Limnobiotic study on the Bhutnal reservoir from Bijapur area. Ph.D. Thesis, KarnatakUniversity, Dharwad.

Kataria, H.C., Jain, O.P., Gupta, S.S Shrivastava, R.M. and Shandilya, A.K. (1995). Physicochemical analysisof water of Kubza river of Hashangabed. Oriental J. Chem., 11 (2): 157 – 159.

Kataria, H.C. (2000). Preliminary study of drinking water of Pipariya Township. Poll. Res., 19 (4): 645-649.

Kataria, H.C. and Jain, O.P. (1995). Physico chemical analysis of river Ajhar. Indian J. Environ. Prot., 5: 569-

Page 35: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

571.

Kataria, H.C., Jain, O.P., Gupta, S.S Shrivastava, R.M. and Shandilya, A.K. (1995). Physicochemical analysisof water of Kubza river of Hashangabed. Oriental J Chem., 11 (2): 157-159.

Kataria, H.C., Jain, O.P., Gupta, S.S Shrivastava, R.M. and Shandilya, A.K. (1995). Physicochemical analysisof water of Kubza river of Hashangabed. Oriental J Chem., 11 (2): 157-159.

Karikari, A.Y. and Ansa-Asare, O.D. (2009). Physico-Chemical and Microbial Water Quality Assessment ofDensu River of Ghana, West African J. Appl. Ecol., 10: 87–100.

Karthikeyan, R., Vijayalakshmi, S., and Balasubramanian, T. (2004). Seasonal distribution of heavy metals inthe sediments from Uppanar estuary (East coast of India). J. Aqua. Biol., 19: 119-122.

Karuppasamy, P.K. and Perumal, P. (2000). Biodiversity of zooplankton at Pichavaram mangroves, South India.Ad. Biosci., 19: 23-32.

Kasten, J. (2003). Inundation and isolation: dynamics of phytoplankton communities in seasonal inundatedflood plain waters of the Lower Odra Valley National Park – Northeast Germany, Limnologica, 33: 99-111.

Kaul, V., Trissal, C.L. Handoo, J.K. (1978). Distribution and production of macrophytes in some aquatic bodiesof Kashmir, In: Singh, J.S. and Gopal, B. (Eds.), Concepts of Ecology. pp. 313-334.

Kaul, V. and. Handoo, J.K. (1980). Physicochemical characteristics of Nilnag-a high altitude forest lake inKashmir and its comparison with valley lakes. Proc. Indian Nat. Sci. Acad. B., 46 (4): 528-541.

Kaur, H., Dhillon, S.S., Bath, K.S. and Mander, G. (1996). Abiotic and Biotic Component of Freshwater Pond,Patiyala, Punjab, Poll. Res., 15 (3): 253-256.

Kaushik, S. and Saksena, D.N. (1989). Physico-chemical factors and the aquatic density of a pond receivingcotton mill effluence at Gwalior, MP State, India. Acta Bot. Ind., 19: 113-116.

Kaushik, S. and Saxena, D.N. (1995). Trophic status of Rotifer fauna of certain waterbodies in central India. J.Environ. Biol., 16 (4): 283 – 291.

Kedar, G.T., Patil, G.P. and Yeole, S.M. (2008). Effect of physico-chemical factors on the seasonal abundanceof zooplankton population in Rishi Lake. In: Sengupta, M. and Dalwani, R (Eds.), Proceeding of theTaal 2007: The 12th World lake Conference. pp. 88-91.

Keller, W. and Yan, N.D. (1991). Recovery of crustacean zooplankton species richness in Sudbury area lakesfollowing water quality improvements. Canadian J. Fisher. Aquat. Sci., 48: 1635-1644.

Keckeis, S., Baranyi, C., Hein, T., Holarek, C., Riedler, P. and Schiemer, F. (2003). The significance ofzooplankton grazing in a floodplain system of the River Danube. J. Plankton Res., 25: 243-253.

Kemdirim, E.C. (2000). Diel rhythm of plankton and physico-chemical parameters in Kangimi reservoir,Kaduna state. Nigeria. J. Aqu. Sci., 15: 35-39.

Kennicutt, W.L.K. (1982). The geochemistry of trace metals in the Brazas River and Brazas River estuary, Ph.D. Thesis, Texas A & M University, pp. 173.

Keeny, D.R. (1982). American Society of Agronomy. 22: 605- 649.

Khabade, S.A., Mule, M.B. and Sathe, S.S. (2002). Studies on physico-chemical parameters of lodhe waterreservoir from Taraon Tahsil (Maharashtra). Indian J. Environ. Ecoplan., 6 (2): 301-304.

Page 36: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Khan, A.A. and Siddiqui, A.Q. (1977). Seasonal changes in limnology of perennial fish pond at Aligarh. IndianJ. Fish., 21: 463-478.

Khan, M., Raza, S.A., Iqbal, S.A., Ghastai, T., Saify, T. and Hussain (1986). Limnochemistry and water qualityaspects of Upper lake Bhopal during winter season. Indian J. Appl. Pure Biol., pp. 47-50.

Khan, M.A. (1987). Observation on zooplankton composition, abundance and periodicity of two floodplainlakes of the Kashmir Himalayan Valley Acta Hydrochemica Hydrobiologia, 15: 167-174.

Khan, R.A. (2002). The ecology and faunal diversity of two floodplain Ox-bow lakes of South-Eastern WestBengal. Records Zool. Surv. India, Occasional Paper No. 195: 1-57.

Khan, R.A. (2003). Faunal diversity of zooplankton in freshwater wetlands of Southeastern West Bengal.Records Zool. Surv. India, Occasional Paper No. 204: 1-107.

Khan, M.A. and Ejike, C.I. (1984). Limnology and plankton productivity of Jos Plateau water reservoir, Nigeria,West Africa. Hydrobiol., 114: 189-199.

Khan, M.A.I., Hossain, A.M.M.M., Huda, M.E., Islam, M.S. and Elahi, S.F. (2007). Physico-chemical andbiological aspects of monsoon waters of Ashulia for economic and aesthetic applications: Preliminarystudies, Bangladesh J. Sci. Ind. Res., 42 (4): 377-396.

King, R.P. and Nkanta, N.A. (1991). The status and seasonality in the physico-chemical hydrology of a NigerianRainforest Pond. Jap. J. Limnol., 52: 1-12.

Kinne, O. (1984). Marine Ecology 5. John Wiley, pp. 618.

Kilhalm, P. and Kilhalm, S.S. (1980). The evolutionary ecology of phytoplankton, In: Merris, I. (Ed.), Thephysiological ecology of phytoplankton. Blackwell Publ. pp. 571–597.

Kinnear, A. and Garnett, P. (1999). Water chemistry of the wetlands of the Yellagonga Regional Park, WesternAustralia. J. Royal Soc.West Aust., 82: 79–85.

Kjellberg, G., Hegge, O. and Løvik, J.E. (2001). Tiltaksorientert overvåking av Mjøsa med tilløpselver. NIVAreport, 4364-2001, pp. 129 (In Norwegian).

Kirschbaum, M.U.F. (1995). The temperature dependence of soil organic matter decomposition, and the effectof global warming on soil organic storage. Soil Biol. Biochem., 27: 753-760.

Kilroy, C., Biggs J.F.B., Vyverman, W. and Broady, P.A. (2006). Benthic diatom communities in subalpinepools in New Zealand: relationships to environmental variables. Hydrobiol., 561: 95-110.

Kiran, B.R., Puttaiah, E.T. and Kamath, D. (2007). Diversity and seasonal fluctuation of zooplankton in fishpond of Bhadra fish farm, Karnataka. Zoos Print J., 22: 2935-2936.

Kiss, K.T. (1987). Phytoplankton studies in the Szigetkoz section of the Danube during 1981–1982. Arch.Hydrobiol., 78. Algol. Stud., 47: 247–273.

Klimowicz, H. (1981). The plankton of the river Vistula in the region of Warsaw in the years 1977-1979. ActaHydrobiol., 23: 47-67.

Knowlton, M.F. and Jones, J.R. (1997). Trophic status of Missouri River floodplain lakes in relation to basintype and connectivity. Wetlands, 17: 468-475.

Krishnan, J. (2008). Investigation on hydrobiology and water quality parameters of Periyar Lake, Thekkady,Kerala, Ph.D. Thesis, Kerala, India.

Page 37: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Koch, M.S. and Reddy, K.R. (1992). Distribution of soil and plant nutrients along a trophic gradient in theFlorida Everglades. Soil Sci. Soc. Amer. J., 56: 1492– 1499.

Koshy, M. and Nayar, T.V. (1999). Water quality aspects of river Pampa, Poll. Res., 18 (4): 501-510.

Koshy, M. and Nayar, T.V. (2000). Water quality of River Pamba at Kozencherry, Poll. Res., 19 (4): 665 – 668.

Korhola, A. (1999). Distribution patterns of Cladocera in subarctic Fennoscandian lakes and their potential inenvironmental reconstruction. Ecography, 22: 357-373.

Koshy, M. (2002). Hydrochemical and biogeochemical study of river Pamba. Ph.D. Thesis, University ofKerala. Kerala, India.

Koste, W. and Robertson, B. (1983). Taxonomic studies of the rotifera from Central Amazonian varzea lake,Lago Camaleão (Ilha de, Marchantaria, Rio Solimões, Brazil). Amazoniana, 8: 225–254.

Koukal, B., Dominik, J., Vignati, D., Arpagaus, P., Santiago, S., Ouddane, B. and Benaabidate, L. (2004).Assessment of water quality and toxicity of polluted rivers Fez and Sebou in the region of Fez(Morocco). Environ. Poll., 131 (1): 163-172.

Kratz, W.A. and Myers, J. (1955). Nutrition and growth of several blue-green algae. Amer. J. Bot., 42: 282-287.

KSPCB (2002). Water quality monitoring of lakes in and around Bangalore city, Bangalore, Vol. 2, pp. 1-8.

Kufel, L. (2001). Uncopling of chlorophyll and nutrients in lakes – possible reasons, expected consequences.Hydrobiol., 443: 59-67.

Kumar, D. (1997). Biologic communities and their relevance in the production processes of reservoir ecosystemwith special emphasis on plankton and benthos. In: Fisheries enhancement in small reservoirs and floodplain lakes. CIFRI, pp. 83-91.

Kumar, N. and Sharma, R.C. (2002): Water quality of river Krishna (Part-2 Biological Characteristics of 7bioindicators.) J. Nat. Conserv., 14 (2): 273-297.

Kumar, C.S. and Perumal, P. (2011). Hydrobiological investigation in Ayyampattinam coast (southeast coast ofIndia) with special reference to zooplankton. Asian J. Biol. Sci., 4 (1): 25-34, DOI:10.3923/ajbs.2011.25.34.

Kurashov, E.A., Telesh, I.V., Panov, V.E., Usenko, N.E. and Rychkova, M.A. (1996). Invertebrate communitiesassociated with macrophytes in Lake Ladoga: effects of environmental factors. Hydrobiol., 322: 49–55.

Kurasawa, H. (1975). Productivity of communities in Japanese inland water, Part 9. In: Mori, S. and Yamamoto,G. (Eds.), Zooplankton. JIBP Synthesis. 10. Tokyo. Univ. Press, pp. 436.

Lahon, B. (1983). Limnology and fisheries of some commercial beels of Assam, India. Ph.D. Thesis, GauhatiUniversity, Guwahati.

Lal, B. (1981). Ecology of Bhainsa Tiba Pond, Ambala, Haryana. M.Phil. Thesis, Punjab UniversityChandigarh, India.

Lakshminarayana, J.S.S. (1965). Studies on phytoplankton of the river Ganges, Varanasi, India. Hydrobiol., 15:119–165.

Lamers, H.B. Tomassen, M. and Roelofs, J.G.M. (1998a). Sulfate-induced eutrophication and phytotoxicity infreshwater wetlands. Environ. Sci. Technol., 32: 199–205.

Page 38: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Lamers, S.M E., Roozendaal, V. and Roelofs, J.G.M. (1998b). Acidification of freshwater wetlands: Combinedeffects of nonairborne sulfur pollution and desiccation. Water Air Soil Poll., 105: 95–106.

Lamers, G.E., Dolls, T., Van den Berg, S.T.G., Van Delft, S.P.J. and Roelofs, J.G.M. (2001). Differentialresponses of freshwater wetland soils to sulphate pollution. Biogeochem., 55: 87–102.

Lampert, W. and Krauss, I. (1976). Zur Biologie der Cladocere Holopedium gibberum Zaddach imWindgfallweiher (Schwarzwald). Arch. Hydrobiol. (Suppl.), 48: 262-286.

Lampert, W. and Sommer, U. (1999). Limnoökologie. Georg Thieme Verlag, Stuttgart, New York.

Lansac-Tôha, FA., Bonecker, C.C., Velho, L.F.M., and Lima, A.F. (1997). Composição, distribuição eabundância da comunidade zooplanctônia. In: Vazzoler, A.E.A.V., Agostinho, A.A. and Hahn, N.S.(Eds.), A Planície de inundação do alto rio Paraná: aspectos físicos, biológicos e socioeconômicos.Maringá: EDUEM, pp. 73-1-2.

Lansac-Tôha, F.A., Bonecker, C.C. and Velho, L.F.M. (2004). Composition, species richness and abundance ofthe zooplankton community, p. 145- 190. In: Thomaz, S.M. Agostinho, A.A. and Hahn, N.S. (Eds.),The Upper Paraná River and its Floodplain: physical aspects, ecology and conservation. Leiden, TheNetherlands.

Lansac-Tôha, F.A., Bonecker, C.C., Velho, L.F.M., Simões, N.R., Dias, J.D., Alves, G.M. and Takahashi, E.M.(2009). Biodiversity of zooplankton communities in the Upper Paraná River floodplain: interannualvariation from long-term studies. Braz. J. Biol. ( Suppl.), 69 (2): 539-549,

Lair, N. (2006). A review of regulation mechanisms of metazoan plankton in riverine ecosystems: aquatichabitat versus biota. River Res. Appl., 22: 567 – 593

Laskar, H.S. and Gupta, S. (2009). Phytoplankton diversity and dynamics of Chatla floodplain lake, BarakValley, Assam, North Eastern India-a seasonal study. J. Environ. Biol., 30 (6): 1007-1012.

Laskar, H.S. and Gupta, S. (2010). Ecology of a Marsh in Chatla floodplain, Barak Valley, North Eastern India.Eco. Env. Consv., 16 (3): 9-15.

Laskar, H.S. and Gupta, S. (2011a). Water quality of two small streams Jalingachhara and Baluchuri of districtCachar, Assam. Assam Univ. J. Sci. Technol., 7 (1): 1-9.

Laskar, H.S. and Gupta, S. (2011b). Chatla Wetland, Cachar, Assam: An Ecological appraisal. In:Chattapadhyay, K.L. (Ed.), Northeast researchers. Vol.-2, Institute of Northeast India Studies, Kolkata,pp. 39-48.

Laskar, H.S. and S. Gupta (2011c). Hydrobiology of Salganga River, Cachar, Assam. In: Battacharjee, J.B.Gupta, A. and Roy, N. (Eds.), Proceeding of Sustainable Development of Water Resources inNortheast India. Akansha Publishing House, New Delhi. pp. 89-100.

Lashari, K.H. Korai, A.L. Sahato, G.A. and Kazi, T.G. (2009). Limnological Studies of Keenjhar Lake, District,Thatta, Sindh, Pakistan, Pak. J. Anal. Environ. Chem. 10 (1 & 2): 39-47.

Lauridsen, T.L. and Hansson, L-A. (2002). The zooplankton community in five Faroese lakes. Ann. Soc. Scient.Færoensis (Suppl.), 36: 70-78.

Lawal-Are, A.O., Onyema, I.C. and Akande, T.R. (2010). The water chemistry, Crustacean zooplankton andsome associated faunal species of a Tropical tidal Creek in Lagos, Nigeria, J. Amer. Sci., 6 (1): 81-90.

Lawson, E.O. (2011). Physico-Chemical Parameters and Heavy Metal Contents of Water from the MangroveSwamps of Lagos Lagoon, Lagos, Nigeria. Adv. Biol. Res., 5 (1): 08-21.

Page 39: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Leibowitz, S.G. and Vining, K.C. (2003). Temporal connectivity in a prairie pothole complex. Wetlands, 23:13–25.

Lechowicz, M.J. and Bell, G. (1991). The ecology and genetics of fitness in forest plants. II. Microspatialheterogeneity of the edaphic environment. J. Ecol., 79: 687-696.

Leman, J.T. (1988). Selective herbivory and its role in the evolution of phytoplankton growth strategies. In:Sandgren, C.D. (Ed.). Growth and Reproductive Strategies of Fresh water Phytoplankton. CambridgeUniversity Press. Cambridge, pp. 369-386.

Lewin, J. and Hughes, D.A. (1980).Welsh floodplain studies, II. Application of a qualitative inundation model.J. Hydrol., 46: 35-49.

Lewis, W.M. Jr. (1988). Primary production in the Orinoco River. Ecology, 69: 679–692.

Lewis, W.M. Jr. (1996). Tropical lakes: how latitude makes a different. In: Schiemer, F. and Boland, K.T. (Eds.)Perspectives in tropical limnology, SPB Academic Publishing by, Amsterdam, The Netherlands, pp.43-64.

Lewis, W.M. Jr. (2000). Basis for the protection and management of tropical lakes. Lakes Reserv. Res. andManag., 5: 34-48.

Lewis, W.M. Jr., Hamilton, S.K., Lasi, M.A., Rodríguez, M. and Saunders III, J.F. (2000). Ecologicaldeterminism on the Orinoco floodplain. Biosci., 50: 681–692.

Lewis, W.M. Jr., Hamilton, S.K., Rodrigues, M.A., Saunders III, J.F. and. Lasi, M.A. (2001). Foodweb analysisof the Orinoco floodplain based on production estimates and stable isotope data. J. N. Am. Benthol.Soc., 20: 241–254.

Likens, G.E. (1972). Nutrients and eutrophication. Special symposium. Amer. Soc. Limnol. Oceanogr.,Lawrence. pp. 328.

Lima, A.F., Lansac-Tôha, F.A., Velho, L.F.M. and Bini, L.M. (1998). Environmental influence on planktoniccladocerans and copepods in the floodplain of the Upper River Paraná, Brazil. Stud. Neotrop. FaunaEnviron., 33:188-196.

Lima, D. (1996). Estrutura das comunidades zooplanctônica e fitoplanctônica do Lago Recreio – Pantanal deBarão de Melgaço- MT. Dissertação deMestrado em Ecologia. UFSCar, São Carlos, pp. 440.

Lima, A.F., Lansac-Tôha, A.F., Velho, L.F.M., Bini, L.M. and Takeda, A.M. (2003). Composition andabundance of Cladocera (Crustacea) assemblages associated with Eichhornia azurea (Swartz) Kunthstands in the Upper Paraná River floodplain. Acta Scientiarum: Biol. Sci., Maringá, 25 (1): 41-48.

Limberger, R., Fesl, C. and Schagerl, M. (2004). Phytoplankton community structure in a Danubian backwatersystem: Response to environmental factors. Arch. Hydrobiol., 161: 181-198.

Linnik, P.M. and Zubenko, I.B. (2000). Role of bottom sediments in the secondary pollution of aquaticenvironments by heavy metal compounds. Lakes Reserv. Res. Manag., 5: 11-21.

Lindholm, T., Vesterkvist, P., Spoof, L., Lundberg-Niinisto C. and Meriluoto, J. (2003). Microcystinoccurrence in lakes in Aland, SW Finland. Hydrobiol., 505: 129-138.

Lindholm, M. (2006). Zooplankton diversity and successions in the Okavango Delta, Botswana. Ph.D. Thesis,University of Oslo, Norway.

Page 40: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Livingstone, D.A. (1963). Chemical composition of rivers and lakes. Chap. G. Data of Geochemistry. 6th Edn.Prof. Pap. U.S. Geol. Surv., 440-G, pp. 64.

Lokeshwari, H. and Chandrappa, G.T. (2006). Impact of heavy metal contamination of Bellandur Lake on soiland cultivated vegetation. Curr. Sci., 91 (5): 622-627.

López-Archilla, A.I. Moreira, D., López-Garcίa, P. And Guerrrero, C. (2004). Phytoplankton diversity andcyanobacterial dominance in a hypereutrophic shallow lake with biologically produced alkaline pH.Extremophiles, 8: 109–115.

Lorenz, C.M., Van Dijk, G.M., Van Hattum, A.G.M. and Cofino, W.P. (1997). Concepts in river ecology:implications for indicator development. Reg. Rivers Res. Manag., 13: 501-516.

Lovell, R.T. (1989). Nutrition and Feeding of Fish. Van Nostrand Reinhold New York, pp: 260.

Loverde-Oliveira, S.M. and Huszar, V.L.M. (2007). Phytoplankton ecological responses to the flood pulse in aPantanal lake, Central Brazil. Acta Limnol. Bras., 19 (2): 117-130.

Lowe-McConnell R.H. (1987). Ecological Studies in Tropical Fish Communities. Cambridge, UK, CambridgeUniversity Press.

Madan Mohan, M. (2008). Characterization and classification of soils and land suitability of a micro-watershedin Hanagal taluk of Haveri district, Dharwad. M.Sc. Thesis, Soil Science and Agricultural Chemistry,University of Agricultural Science, Dharwad.

Mala-Barbosa P.M. and Bozelli, R.L. (2006). Community structure and temporal dynamics of cladocerans in anAmazonian lake (lake Batata, PA, Brazil) impacted by bauxite tailings. Acta Limnol. Bras., 18 (1): 67-75.

Mallin, M.A. and Pearl, H.W. (1992). Effects of variable irradiance on phytoplankton productivity in shallowestuaries. Limnol. Oceanogr., 37:54–62.

Maillard, P. and Santos, N.A.P. (2008). A spatial–statistical approach for modeling the effect of non-pointsource pollution on different water quality parameters in the Velhas River Watershed. Brazil. J.Environ. Manag., 86: 158–170.

Maitland, P.S. (1990). Biology of Fresh Waters. Chapman and Hall, USA.

Murugan, N., Murugavel, P. and Koderkar. M.S. (1998). Freshwater cladocera; Indian Association of AquaticBiologists (IAAB), Hyderabad. pp. 1-47.

Magurran, A.E. (2004). Measuring Biological Diversity. Blackwell Publishing U.S.A. pp. 255.

Mahajan, A.D. and Mahajan, D. (1988). Study of algal communities in Velhad Lake near Bhusawal asindicators of organic pollution. Proc Nat. Symp: Past, Present Future of Bhopal lake. pp. 133-135.

Maji, B. and Bandyopadhyay, B.K. (1995). Characterization and classification of coastal soils of various pHgroups in Sundarbans of West Bengal. J. Indian Soc. Soil Sci., 43: 103-107.

Manca, M. and Comoli, P. (1999). Studies on zooplankton of Lago Paione Superiore. J. Limnol., 58 (2): 131-135.

Mani, P. (1992). Natural phytoplankton communities in Pichavaram mangroves. Ind. J. Mar. Sci., 12: 278-280.

Makhlough, A. (2008). Water quality characteristics of Mengkuang reservoir based on phytoplanktoncommunity and physico-chemical analysis, M.Sc. Thesis. Malaysia.

Page 41: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Managayarkarasi, K. (1996). Kaveri water pollution: A physico-chemical aspect. Ph.D. Thesis, BharathidasanUniversity, Tamilnadu, India.

Manzer, M.B.H., Nehal, M., Rahamatullah, M. and Bazmi, H. (2005). A comparative study of populationkinetics and seasonal fluctuation of zooplankton in two diverse ponds of north Bihar. Nat. Environ.Poll. Tech., 4: 23-26.

Margalef, R. (1951). Diversidad de especies en las comunidales naturales. Publ. Inst. Biol. Appl., 9: 5-27.

Margalef, R. (1968). Perspectives in Ecological Theory. Chicago, IL: University of Chicago Press.

Margalef, R. (1972). Homage to Evelyn Hutchinson, or why is there an upper limit to diversity. Trans. ConnectAcad. Arts. Sci., 44: 211–235.

May, R.M. (1975). Patterns of species abundance and diversity. In: Cody, M.L. and Diamond, J.M. (Eds.)Ecology and evolution of communities, Harvard University Press, pp. 81–120.

Maria-Heleni, Z., Michaloudi, E., Bobori, D.C. and Mourelatos, S. (2000). Zooplankton abundance in theAliakmon River, Greece. Belg. J. Zool., 130 (suppl.1): 29-33

Marion, G.M., Vancleve, K. and Dyrness, C.T. (1993). Calcium carbonate precipitation dissolution along aforest primary successional sequence on the Tanana River floodplain, interior Alaska. Canadian J.Forest Res., 23: 923-927.

Marmorek, D.R. and Korman, J. (1993). The use of zooplankton in a biomonitoring program to detect lakeacidification and recovery. Water Air Soil Poll., 69: 223-241.

Marzolf, G.R. (1990). Reservoirs as environments for zooplankton. In: Thornton, K.W., Kimmel, B.L. andPayne, F.E. (Eds.), Reservoir limnology: ecological perspectives. John Wiley &Sons, Inc., New York.pp. 195–208.

Marzodoni, C., Liavatta, C. and Gessa, C. (1986). Effect of lead pollution on different soil enzyme activities.Biol. Ferti. Soils, 22: 53-58.

Marrs, R.H. (1993). Soil fertility and nature conservation in Europe: theoretical considerations and practicalmanagement solutions. Adv. Ecol. Res., 24: 241–300.

Martin, J.F. and Reddy, K.R. (1997). Interaction and spatial distribution of wetland nitrogen processes. Ecol.Modell., 105: 1-21.

Maltby, E., Jewkes, E.C., Baker, C.J., Mockler, N.J., Flynn, N. and Gardner, P.J. (1998). A simple method forestimating nitrate removal from floodwaters in river marginal wetlands. Soil Use Manag., 14: 90– 95.

Marchese, M. and Ezcurra de Drago, I.E. (1992). Benthos of the lotic environments in the middle Parana Riversystem: Transverse zonation. Hydrobiol., 237: 1-13.

Marchese, M. Escurra de Drago, I. and Drago, E. (2002). Benthic macroinvertebrates and physical habitatrelationships in the Paraná river-floodplain system. In: M. McClain, M. (Ed.), Int. Assoc. Hydrol. Sci.,Special publication No. 6.

Mashaly, I.A. and El-Ameir, Y.A. (2007). Hydrophytic vegetation in the irrigation and drainage canal system ofthe River Nile in Egypt. World Appl. Sci. J., 2 (1): 49-61.

Masoud, M.S., Elewa, A.E.S.A., Ali, A.E. and Mohamed, A.E. (2005). Distribution of some metalconcentrations in water and sediments of Lake Edku, Egypt. Bull. Chem. Technol. Macedonia, 24 (1):21–34.

Page 42: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Mathivanan, V., Vijayan, P., Sabhanayakm, S. and Jeyachitra, O. (2007). An assessment of plankton populationof Cauvery River with reference to pollution. J. Env. Biol., 28: 523-527.

McCarthey, J.J., Canziani, O.F., Leary, N.A., Dokken, D.G. and White, K.S. (2001). Climate change 2001:impacts, adaptation and vulnerability. Cambridge University Press. pp. 1005.

McCartney, M.P., Stratford, C.J., Neal, C., Bradford, R., Mills, S. and Johnson, M. (2003). Seasonality andwater quality trends in a maturing recreated reed bed. Sci. Total. Environ., 314-316: 233-254.

McClain, M.E. and Richey, J.E. (1996). Regional-scale linkages of terrestrial and lotic ecosystems in theAmazon basin: a conceptual model for organic matter. Arch. Fur Hydrobiol., (Suppl.), 113: 111–125.

McClintock, N.L. and Wilhm, J.L. (1977). Effects of artificial destratification on zooplankton of two Oklahomareservoirs. Hydrobiol., 54: 233-239.

McCauley, E. and Kalff, J. (1981). Empirical relationships between phytoplankton and zooplankton biomass inlakes. Canadian J. Fisher. Aquat. Sci. 38: 458-463.

MacDonald and Partners (1987). Supplementary Soil Survey for Kpong Irrigation Project. Soil ResearchInstitute, Kumasi. pp. 5–18.

McFadden, J.P., Macdonald, N.W. Witter, J.A. and Zak, D.R. (1994). Fine-textured soil bands and oak forestproductivity in northwestern Lower Michigan, USA. Canadian J. Forest Res., 24: 928-933.

McLatchey, G.P. and Reddy, K.R. (1998). Regulation of organic matter decomposition and nutrient release in awetland soil. Soil Sci. Soc. Amer. J., 27: 1268-1274.

Mclachlan, A.J. and Mclachlan, S.M. (1971). Benthic fauna and sediments in the Newly Created Lake Kariba(Central Africa). Ecology, 52: 800-809.

McNeely, R.N., Neimanis, V.P. and Dwyer, L. (1979): Water quality source book – A guide to water qualityparameters. Environment Canada, Inland Waters Directorate, Water Quality Branch, Ottawa, Canada.

Mehra, A., Farago, M.E. and Banerjee, D.K. (2000). A study of Eichhornia crassipes growing in the overbankand floodplain soils of the river Yamuna in Delhi, India. Environ. Monit. Assess., 60: 25–45.

Mehta, K.V. (2010). Physicochemical characteristics and statistical study of groundwater of some places ofVadgam taluka in Banaskantha district of Gujarat state (India). J. Chem. Pharm. Res., 2 (4): 663-670.

Melo, S. and Huszar, V.L.M. (2000). Phytoplankton in an Amazonian flood-plain lake (Lago Batata, Brasil):diel variation and species strategies. J. Plankton Res., 22 (1): 63–76.

Melack, J.M. and Kilham, M.P. (1974). Photosynthetic rates of phytoplankton in East African alkaline, salinelakes. Limnol. Oceanogr., 19 (5): 743-755

Melack, J.M. (1979). Temporal variability of phytoplankton in tropical lakes. Oeocologia, 44: 1-7.

Melack, J.M. (1996). Recent developments in tropical limnology. Verh. Int. Ver. Limnol., 26: 211-217.

Meera, S. and Nandan, S.B. (2010). Water quality status and Primary productivity of Valanthakad Backwater inKerala, Indian J. Mar. Sci., 39 (1): 105-113.

Mengistou, S. (1989). Species composition, dynamics and production of the dominant crustacean zooplanktonin Lake Awasa, Ethiopia. Ph.D. Dissertation. Univeristy of Waterloo.

Page 43: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Meshram, C.B. (2005). Zooplankton diversity in relation to pollution of Lake Wadali, Amaravathi. J.Ecotoxicol. Environ. Monit., 15: 55-59

Meybeck, M. and Helmer, R. (1989). The quality of rivers: from pristine stage to global pollution. Global PlanetChange, 1: 283-309.

Michael, R.G. (1968). Studies on the zooplankton of a tropical fish lake. Hydrobiol., 32: 47-68.

Michael, P. (1984). Ecological Methods for Field and Laboratory Investigations. Tata McGraw– Hill, NewDelhi, pp. 404.

Michael, R.G. and Sharma, B.K. (1998). Indian Cladocera (Crustacea: Branchiopoda : Cladocera) Fauna ofIndia and Adjacent countries. Zoological Survey of India, pp. 262.

Middelkoop, H. (2000). Heavy-metal pollution of the river Rhine and Meuse floodplains in the Netherlands.Geologie en Mijnbouw / Netherlands J. Geosci., 79 (4): 411-428.

Middelkoop, H. and Van der Perk, M. (1998). Modelling spatial patterns of overbank sedimentation onembanked floodplains. Geografiska Annaler, 80A: 95-109.

Middleton, B.A. (1999). Wetland restoration, flood pulsing and disturbance dynamics. New York, John Wileyand Sons.

Mihaljević, M. and Novoselić, D. (2000). Trophic state of Lake Sakadasˇ (Nature Reserve Kopački rit) in thelate autumnal and winter period of 1997/98. Periodicum Biologorum, 102: 253–257.

Mihaljević, M., Stević, F., Horvatić, J. and Kutuzovic, B.H. (2009). Dual impact of the flood pulses on thephytoplankton assemblages in a Danubian floodplain lake (Kopački Rit Nature Park, Croatia).Hydrobiol., 618: 77–88, DOI 10.1007/s10750-008-9550-6.

Mihaljević, M., Špoljarić, D., Stević F., Cvijanović, V, Hackenberger Kutuzović, B (2010). The influence ofextreme floods from the River Danube in 2006 on phytoplankton communities in a floodplain lake:Shift to a clear state. Limnologica - Ecology and Management of Inland Waters 40: 260–268, DOI:10.1016/j.limno.2009.09.001.

Mihaljević, M. and Stević, F. (2011). Cyanobacterial blooms in a temperate river-floodplain ecosystem: theimportance of hydrological extremes. Aquat. Ecol., 45: 335–349, DOI: 10.1007/s10452-011-9357-9.

Miller, J.G. (2005). The flow of energy: primary production to higher trophic level.http://www./limno.fcien.edu.uy/ research/rochabst.html.

Miller, C.V., Foster, G.D. and Majedi, B.F. (2003). Base flow and storm flow metal fluxes from two smallagricultural catchments in the coastal plain of Chesapeake Bay Basin, United States. Appl. Geochem.,18 (4): 483-501.

Millennium Ecosystem Assessment (2005). Ecosystem and Human Well-Being: Wetlands and water Synthesis.World Resources Institute, Washington, DC.

Mikryakova, T.F. (1996). Heavy metals in macrophytes of the Rybinsky water storage pond. Water Resources,2: 234–240.

Miller, J.G. (2005). The flow of Energy: primary Production to Higher Trophic Levels,www/limno,fcien.edu.uy/research/rochabst.html.

Mini, I. (2003). Studies on bioorganics and trace metals in the associated flora of a lotic ecosystem –Vamanapuram River. Ph.D. Thesis. University of Kerala. India.

Page 44: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Mini, V., Patil, P.L. and Dasog, G.S. (2007). Characterization and classification of soils of Pilot site in coastalagro-ecosystem of North Karnataka. Agropedol., 17 (1): 59-67.

Michener, W.K. and Haeuber, R.A. (1998). Flooding: natural and managed disturbances. BioSci., 48: 677-680.

Mishra, P.C. (2005). Some aspects of the quality of water in and around Rourkela, Ph.D. Thesis, NIT Rourkela,Odissa, India.

Mishra, A., Mukherjee, A. and Tripathi, B. D. (2009). Seasonal and Temporal Variations in Physico-chemicaland Bacteriological Characteristics of River Ganga in Varanasi. Int. J. Environ. Res., 3 (3): 395-402.

Mitsch, W.J., and Reeder, B.C. (1991). Modelling nutrient retention of a freshwater coastal wetland: estimatingthe role of primary productivity, sedimentation, resuspension and hydrology. Ecol. Modell., 54: 151-187.

Mitsch, W.J. and Gosselink, J.G. (1993). Wetlands. 2nd Edn. Van Nostrand Reinhold, New York. pp. 722.

Mitsch, W.J. (1994). The nonpoint source pollution control function of natural and constructed riparianwetlands. In: Mitsch, W.J. (Ed.) Global wetlands: Old World and New. Elsevier Sci., New York, pp.351-361.

Mitsch, W.J. and Gosselink, J.G. (2000). The value of wetlands: Importance of scale and landscape setting.Ecol. Economics, 35:25-33.

Mitra, A. and Patra, K.C. (1990). Ecology of planktonic copepods in the Mandarmani Creek of West Bengal,India. J. Mar. Sci., 19 (4): 278-281.

Mitsch, W.J. and Gosselink, J.G. (2007): Wetlands. 4th Edn. John Wiley and Sons, New York, New York.

Modenutti, B, Queimaliños, C, Balseiro, E. and Reissig, M. (2003). Impact of different zooplankton structureson the microbial food web of a south Andean oligotrophic lake. Acta Oecologica, 24: S289–S298.

Mohammad, S.S., Ali, A. and Ali, N.B.S. (2012). Investigation on identification, density and distribution ofzooplankton in Lar Reservoir. World J. Fish Mar. Sci., 4 (2): 211-217.

Molisani, S.S., Barroso, H.S., Becker, H., Moreira, M.O.P., Hijo, C.A.G., do Monte, T.A. and Vasconcellos,G.H. (2010). Trophic state, phytoplankton assemblages and limnological diagnosis of the CastanhãoReservoir, CE, Brazil. Acta Limnologica Brasiliensia, 22 (1): 1-12.

Mondol, D.K., Kaviraj, A. and Saha, S. (2010). Water quality parameters and fish biodiversity indices asmeasures of ecological degradation: A case study in two floodplain lakes of India. J. Water Res. Prot.,2: 85-92, DOI:10.4236/jwarp.2010.21010.

Mohan, D. and Choudhary, D. (2010). Variations in physico-chemical and microbiological characteristics ofwater during breeding of Cyprinus carpio in a closed hatchery system. J. Environ. Biol., 31: 301-306.

Mohiuddin, K.M., Zakir, H.M., Otomo, K., Sharmin, S. and Shikazono, N. (2010). Geochemical distribution oftrace metal pollutants in water and sediments of downstream of an urban river. Int. J. Environ. Sci.Tech., 7 (1): 17-28.

Mohiuddin, K.M., Ogawa, Y., Zakir, H.M. Otomo, K. and Shikazono, N. (2011). Heavy metals contaminationin water and sediments of an urban river in a developing country. Int. J. Environ. Sci. Tech., 8 (4): 723-736.

Page 45: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Montein, B., Osumi, K., Nakazanu, T., Odahara, T., Okamoto, C. and Kikuchi, M. (1999): Identification ofphytoplankton and the relationship between phytoplankton biomass and water quality in Kumamotozoo Basin. Pro. Sch. Agri. Kyushu Tokai Univ. 18: 23-33.

Mortensen, E., Jeppensen, E., Sendergaard, M. and Nielsen, L.K. (1992). Nutrient dynamics and Biologicalstructure in shallow freshwater and brackish Lakes. Developments in Hydrobiology 94, KluwerAcademic Publ. Dordrecht, The Netherlands, pp. 580.

Morillo, J., Usero, J. and Gracia, I. (2004). Heavy metal distribution in marine sediments from the southwestcoast of Spain. Chemosphere, 55 (3): 431-442.

Mookerjee, H.K. and Bhattacharya, H.N. (1949). Culture of fish in temporary hard waters. Proc. Zool. Soc.Bengal., 2: 164-171.

Moore, J. W. and Ramamoorthy, S., (1984). Heavy Metals in Natural Waters: Applied Monitoring and ImpactAssessment, Springer-Verlag, New York, pp. 28-246.

Moorhead, K.K., Moynihan, R.E. and Simpson, S.L. (2000). Soil characteristics of four Southern Appalachianfens in North Carolina, USA. Wetlands, 20: 560–564.

Moss, B. and Balls, H. (1989). Phytoplankton distribution in a temperate floodplain lake and river system. II.Seasonal changes in the phytoplankton communities and their control by hydrology and nutrientavailability. J. Plankton Res., 11: 939-867

Moss, B., Booker I., Balls, H., Manson, K. (1989). Phytoplankton distribution in a temperate floodplain lake andriver system. I. Hydrology, nutrient sources and phytoplankton biomass, J. Plankton Res., 11: 815-840

Moss, B. and Balls, H. (1989). Phytoplankton distribution in a flood plain lake and river system II. Seasonalchanges in the phytoplankton communities and their control by hydrology and nutrient availability. J.Plankton Res., 11 (4): 839-867.

Moss, B. (1993). Ecology of Fresh waters – Man & Medium. 2nd Edn. Oxford Blackwell scientific building,London.

Moore, D.R.J., Keddy, P.A., Gaudet, C.L. and Wisheu, I.C. (1989). Conservation of wetlands: do infertilewetlands deserve a higher priority? Biol. Conserv., 47: 203–217.

Moore, W.J. and Moore, E.A. (1976). Environmental Chemistry, Academics Press, Inc. London, pp. 360-368.

Moore, T.R. and Knowles, R. (1987). Methane and carbon dioxide evolution from subarctic fen. Can. J. SoilSci., 67: 77– 81.

Moore, T.R. and Knowles, R. (1989). The influence of water table levels on methane and carbon dioxideemissions from peatland soils. Can. J. Soil Sci., 69: 33– 38.

Morini-Lopes, A.A.E.T. (1999). Limnological conditions and zooplankton composition of Lake Sinhá-Mariana,Barão de Melgaço-Mato-grossan Pantanal. Masters Thesis, Institute of Biosciences, Federal Universityof Mato Grosso, Cuiabá, pp. 98 (In Portuguese).

Moreno-Ostos, E., Cruz-Pizarro, L., Basanta, A. and Glen, G.D. (2008). The spatial distribution of differentphytoplankton functional groups in a Mediterranean reservoir. Aquat Ecol., 42: 115–128.

Morlock, S., Jaylor, D., Gibin, A., Hopkinson and Tucker, J. (1997). Effect of salinity on the fate of inorganicnitrogen in the sediments of the Parker river estuary. Massachusetts. Biol. Bull. Mar. Biol. Lab., 193(2): 290-292.

Page 46: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Moyle J.B. (1949). Some indices of lake productivity trends. Amer. Fish. Soc., 76: 322 – 334.

Muzaffar, S.B. and Ahmed, F.A. (2006). The effects of the flood cycle on the diversity and composition of thephytoplankton community of a seasonally flooded Ramsar wetland in Bangladesh. Wetlands Ecol.Manage., DOI: 10.1007/s11273-006-9014-6.

Muoghalu, J.I., Akanni, S.O. and Eretan, O.O. (1993). Litter and nutrient dynamics in a Nigerian rainforestseven years after a ground fire. J. Veg. Sci., 4: 325–328.

Moundiotiya, C., Sisodia, R., Kulshreshtha, M and Bhatia, A.L. (2004). A case study of the Jamwa RamgarhWetland with special reference to physico chemical properties of water and its environ, J. environ.Hydrol., 12: 1-7.

Mukhopadhysay, S.K., Gupta, A. and Chattopadhyay, R. (2000). Rotiferan community structure of a tanneryeffluent stabilisation pond in east Culcutta wetland ecosystem. Chem. Eng. Res., 9: 85-91.

Mukhopadhyay, G., Mondal, D., Biswas, P. and Dewanji, A. (2004). Water quality monitoring of tropicalponds: location and depth effect in two case studies. Acta Hydrochim. Hydrobiol., 32: 138-148.

Muller-Eberhard, U., Miescher, P.A. and Jaffe, E.R. (1977). Iron Excess. Aberrations of Iron and PorphyrinMetabolism, Grun and Stratton, New York, pp. 34–36.

Munuswamy, N. (1982). Electrophoregram studies of three problematic Streptocephalus species (Anostraca).Crustaceana, 43 (3): 261-264.

Munuswamy, N., Sathyanarayanan, S. and Priyadarshini, A. (2009). Embryonic development and occurrence ofp26 and artemin-like protein in the cryptobiotic cysts of freshwater fairy shrimp, Streptocephalusdichotomus Baird. Curr. Sci., 96 (1): 103-110.

Munawar, M. (1970). Limnological studies of fresh water ponds of Hyderabad, India I. The biotope. Hydrobiol.,35: 127-162.

Munawar, M. (1972). Ecological studies of Euglenineae in certain polluted and unpolluted environment.Hydrobiol., 39 (3): 307-320.

Munawar, M. (1974). Limnological studies of fresh water ponds of Hyderabad, India IV. The biocoenose,periodicity of species composition of unicellular and colonial phytoplankton in polluted and unpollutedenvironments. Hydrobiol., 45 (1): 1–32.

Munns, D.N. and Franco, A.A. (1982). Soil constraints on legume production. In: Graham, P. and Harris, S.C.(Eds.), Biological Nitrogen Fixation Technology for Tropical Agriculture. CIAT, California, pp. 133–152.

Murdoch, T., Cheo, M. and O'Laughlin, K. (2001). Streamkeeper's Field Guide: Watershed Inventory andStream Monitoring Methods. Adopt-A-Stream Foundation, Everett, WA. pp. 297.

Masundaire, H.M. (1994). Seasonal trends in zooplankton densities in Sanyati basin, Lake Kariba: multivariateanalysis. Hydrobiol., 272: 211-230.

Mustapha, M.K. (2009). Phytoplankton assemblage of a small, shallow, tropical African reservoir. Rev. Biol.Trop., 57 (4): 1009-1025.

Mustapha, M.K. (2010). Seasonal influence of limnological variables on plankton dynamics of a small, shallow,tropical African reservoir. Asian J. Expt. Biol. Sci., 1 (1): 60-79.

Page 47: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Mwaura, F. (2006). Some aspects of water quality characteristics in small shallow tropical man-made reservoirsin Kenya. African J. Sci. Technol., (AJST) Science and Engineering Series, 7 (1): 82 – 96.

Mwaitega, S.R. (2003): Limnological studies of floodplain lakes Ruwe and Uba, Rufiji River, Tanzania. M. Sc.Thesis. University of Dar Es Salaam, Tanzania.

Mwanburi, J. and Oloo, F.N. (1996/97). The distribution and concentration levels of trace metals in water andsediments of Lake Victoria, Kenya. Afr. J. Hydrobiol. Fisher., 1 (1-2): 37-48.

Nabout, J.C., Nogueira, I.S. and Oliveira, L.G. (2005). Phytoplankton community of floodplain lakes of theAraguaia River, Brazil in the rainy and dry seasons J. Plankton Res., Advance Access publishedDecember 1, 2005.

Nabout, J.C., Nogueira, I.S. and Oliveira, L.G. (2006). Phytoplankton community of floodplain lakes of theAraguaia River, Brazil, in the rainy and dry seasons. J. Plankton Res., 28: 181–193.

Nabout, J.C. and Nogueira, I.S. (2007). Spatial and temporal dynamics of phytoplankton functional group in ablocked valley (Brazil). Acta Limnol. Bras., 19 (3): 305-314.

Nagajyoti, P.C., Dinakar, N., Prasad, T.N., Suresh, C. and Damodharam T. (2008). Heavy metal toxicity:Industrial Effluent Effect on Groundnut (Arachis hypogaea L.) Seedlings. J. Appl. Sci. Res., 4: 110-121.

Naik, A.A. and Wanganeo, A. (2008). Seasonal variations of heavy metals in surface water samples of upperbasin of Bhoj Wetland, Bhopal. Poll. Res., 27 (4): 649-653.

Narayan, R., Saxena, K.K. and Chauhan, S. (2007). Limnological investigations of Texi temple pond in districtEtawah (U.P.). J. Environ. Biol., 28 (1): 155 – 157.

Nasir, U.P. and Harikumar, P.S. (2011): Ecotoxicity and ecosystem health of a Ramsar Wetland System ofIndia. J. Environ. Prot., 2: 710-719.

Nash, B. (2006). The effects of increased rainfall precipitation on nutrient levels in surface water in SouthernManitoba. Hons. Thesis, Department of Biology, The University of Winnipeg.

Nath, D. (1997). Methods of Evaluating Primary Productivity in Small Water Bodies in Fisheries Enhancementin Small Reservoirs and Floodplain Lake. CIFRI. pp. 65-73.

Nath, A.J. and Das, A.K. (2011). Carbon storage and sequestration in bamboo-based smallholder homegardensof Barak Valley, Assam. Curr. Sci., 100 (2): 229-233.

Nath, D. and Srivastava, N.P. (2001). Physico-chemical characteristics of Narmada for the stretch Sandia toMola in M.P. state in the context of construction of reservoirs on the river or its tributaries. J. InlandFisher. Soc. India, 33 (1): 17–24.

Nayak, R.K., Sahu, G.C. and Nanda, S.S.K. (2002). Characterization and classification of the soils of CentralResearch Station, Bhubaneswar. Agropedol., 12: 1-8.

Needham, J.G. and Needham, P.R. (1962). A Guide to the Study of Freshwater Biology. San Francisco: Holdenday Ins., pp. 108.

Nedwell, D.B. and Trimmer, M. (1996). Nitrogen fluxes through the upper estuary of the Great Ouse. England:role of bottom sediments. Mar. Ecol. Prog. Ser., 142: (1): 273 – 286.

Neiff, J.J. (1990). Ideas for an ecological interpretation of the Paraná. Interciencia, 156: 424-441.

Page 48: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Neiff, J.J. (2001). Diversity in some tropical wetland systems in South America. In: Gopal, B., Junk, W.J. andDavis, J.A. (Eds.), Biodiversity in wetlands: assessment, function and conservation, Vol. 2. BackhuysPublishers, Leiden, pp. 157–186.

Neill, W.E. and Peacock, A. (1980). Breaking the bottleneck. Interactions of invertebrate predators and nutrientsin oligotrophic lakes. Am. Sot. Limnol. Oceanogr. Spec. Symp. New England. 3: 715-724.

Nelson, S.D. and Terry, R.E. (1996). The effects of soil physical properties and irrigation method ondenitrification. Soil Sci., 161 (4): 242-249.

Newbold, C., Honnor, J. and Buckley, K. (1989). Nature conservation and the management of drainagechannels, Nature Conservancy Council.

Nirmal Kumar, J.I. and Oommen, C. (2011). Phytoplankton composition in relation to Hydrochemicalproperties of tropical community wetland, Kanewal, Gujarat, India. Appl. Ecol. Environ Res., 9 (3):279-292.

Nixdorf, B., Mischke, U. and Rücker, J. (2003). Phytoplankton assemblages and steady state in deep andshallow eutrophic lakes–an approach to differentiate the habitat properties of Oscillatoriales.Hydrobiol., 502: 111–121, DOI: 10.1023/B:HYDR.0000004274.65831.e5.

Nogrady, T., Wallace, R.L. and Snell, T.L. (1993). Rotifera. SPB Academic Publishing.

Novák P., Vopravil J. and Lagová, J. (2007). Analyse and mapping of soil infiltration ability and water retentioncapacity in the Czech Republic. Final report of project No. VaV 1D/1/5/05, RISWC, Prague. (inCzech)

NRCS (2008). Natural Resources Conservation Service, United States Department of Agriculture. NationalCooperative Soil Survey. http://websoilsurvey.nrcs.usda.gov.

NSW (2000). Algal Information Department of Land water Conservation. National Standard of Water, U.S.

Ntekim, E.E.U., Ekwere, S.J. and Okon, G.A.E. (1992). Trace metal distribution in the sediments of the Bight ofBonny, Southeastern Nigeria. Trop. J. Appl. Sci., 2: 8–14.

Nwankwo, D.I. (1996). Phytoplankton diversity and succession in Lagos lagoon, Nigeria. Arch. Hydrobiol., 135(4): 529 – 542.

Nwankwo, D.I. (1998). Seasonal Changes in Phytoplankton Composition and Diversity in the Epe Lagoon,Nigeria. Acta Hydrobio., 40 (2): 83 – 92.

Nwankwo, D.I. and Onyema, I.C. (2003). A checklist of planktonic algae off Lagos coast. J. Sci. Res. Dev., 9:75 – 82.

Nwankwo, D.I. (2004). Studies on the Environmental preference of blue-green algae (Cyanophyta) in Nigeriacoastal waters. The Nigeria Environ. Soc. J., 2 (1): 44 -51.

Nwankwo, D.I., Owoseni, T.I., Usilo, D.A. Obinyan, I. Uche, A.C. and Onyema, I.C. (2008). Hydrochemistryand plankton dynamics of Kuramo lagoon Life Sci. J., 5 (3): 83-88.

Obasohan, E.E. and Eguavoen, O.I. (2008). Seasonal variations of bioaccumulation of heavy metals in afreshwater fish (Erpetoichthys calabaricus) from Ogba River, Benin City, Nigeria. African J. GeneralAgric., 4 (3): 153-163.

Obi, M.E. (1984). Physical properties of wetland soils. 12th Ann. Conf. Soil Sci. Soc. Nig., Port Harcourt,Nigeria.

Page 49: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

O’Brien, W.J., Barfield, M., Bettez, N.D., Gettel, G.M., Hershey, A.E., McDonald, M.E., Miller, M.C.,Mooers, H., Pastor, J., Richards, C. and Schuldt, J. (2004). Physical, chemical, and biotic impacts onarctic zooplankton communities and diversity. Limnol. Oceanogr., 49: 1250– 1261.

Obertegger, U., Flaim, G., Braioni, M.G., Sommaruga, R., Corradini, F. and Borsato, A. (2007). Waterresidence time as a driving force of zooplankton structure and succession. Aquat. Sci., 69: 575 – 583.

Odada E.O., Olago, D.O. Kulindwa, K. Ntiba M. and Wandiga, S. (2004). Mitigation of environmentalproblems in Lake Victoria, East Africa: Casual chain and policy options analyses, Royal Swedish Acad.Sci., -Ambio 33 (1-2): 13-16

Odiete, W.O. (1999). Environmental Physiology of Animals and Pollution. Diversified Resources Ltd., Lagos,pp. 261.

Odukuma, L.O. and Okpokwasili, G.C. (1993). Seasonal Ecology of Hydrocarbon Utilizing Microbes in theSurface Waters of a River. Environ. Monit. Assess., 27: 175-191.

Odum, E.P. (1971). Fundamentals of Ecology. 3rd Edn, W.B. Saunders Company, Philadelphia, pp. 574.

Offem, B.O., Samsons, Y.A., Omoniyi, I.T. and Ikpi, G.U. (2009). Dynamics of the limnological features anddiversity of zooplankton populations of the Cross River System SE Nigeria. Knowl. Manag. Aqu.Ecosyst., 393: 02.

O’Farrel, I. (1993). Phytoplankton ecology and limnology of the Salado river (Buenos Aires, Argentina).Hydrobiol., 271: 169–178.

Ogban, P.I., Effiong, G.S., Obi, J.C. and Ibia, T.O (2011). Characteristics, potentials and constraints of wetlandsoils for agricultural development in Akwa Ibom State, Nigeria. Nigerian J. Agri. Food Environ., 7 (2):80-87.

Ogbeibu, A.E. and Anozia, C.A. (2007). Impact of dredging on water quality and rotifers of the Ikpoba river,Benin City, Nigeria. Int. J. Ecol. Environ. Sci., 33: 293-300.

Ogbodo, E.N. (2011). Assessment of Some Soil Fertility Characteristics of Abakaliki Urban Flood Plains ofSouth-East Nigeria, for Sustainable Crop Production. World J. Agri. Sci., 7 (4): 489-495.

Ogoyi, D.O., Mwita, C.J., Nguu, E.K. and Shiundu, P.M. (2011). Determination of heavy metal content inwater, sediment and microalgae from Lake Victoria, East Africa. The Open Environ. Engg. J., 4: 156-161.

Oguzie, F.A. (2003). Heavy metals in Fish, Water and Effluents of Lower Ikpoba River in Benin City, Nigeria.Pakistan J. Sci. In dust. Res., 46 (3): 156-160.

Oh, H.-M., Ahn, C.-Y., Lee, J.-W., Chon, T.-S. and Choi, K.H. (2007). Community patterning and identificationof predominant factors in algal bloom in Daechung Reservoir (Korea) using artificial neural networks.Ecol. Model., 203: 109–118.

Ohimain, E.I., Imoobe, T.O. and Bawo, D.D.S. (2008). Changes in water physico chemical properties followingthe dredging of an oil well access canal in the Niger Delta. World J. Agri. Sci., 4 (6): 752-758

Olaniyan, C.I.O. (1969). The seasonal variation in the hydrology and total plankton of the lagoons of south-western Nigeria. Nigerian J. Sci., 3 (2): 101-119.

Olele, N.F. and Ekelemu, J.K. (2008). Physicochemical and periphyton/phytoplankton study of Onah Lake,Asaba, Nigeria. African J. Gen. Agri., 4 (3): 183-193.

Page 50: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Oliver, R.L. and Ganf, G.G. (2000). Freshwater blooms. In: Whitton, B. A. and Kluwer, P.M. (Eds.), TheEcologie of Cyanobacteria. Academic Publishers, Dortrecht NL, pp. 149–194.

Okafor, E.C. and Opuene, K. (2007). Preliminary assessment of trace metals and polycyclic aromatichydrocarbons in the sediments. Int. J. Environ. Sci. Tech., 4 (2): 233 – 240.

Okbah, M.A. and El-Gohary, S. El. (2002). Physical and Chemical Characteristics of Lake Edku Water, Egypt,Medit. Marine Sci., 3 (2): 27-39.

Oketola, A.A., Osibanjo, O., Ejelonu, B.C., Oladimeji, Y.B. and Damazio, O.A. (2006). Water qualityassessment of River Ogun around the cattle market of Isheri, Nigeria. J. Appl. Sci., 6 (3): 511–517.

Okonkwo, G.E. (2000). Impact of Pepsi-7up industrial effluents on surface water (Alaro stream), M. Sc. Thesis,University of Ibadan, (Ibadan).

Okogwu, O.I. and Ugwumba, O.A. (2006). The zooplankton and environmental characteristics of OlogeLagoon, Southwest, Nigeria. Zoologist, 3: 86-92.

Okogwu, O.I. and Ugwumba, O.A. (2008). Cyanobacteria abundance and its relationship to water quality in theMid-Cross River floodplain, Nigeria. Rev. Biol. Trop. (Int. J. Trop. Biol.) , 57 (1-2): 33-43.

Okogwu, O.I., Nwani, C.D. and Ugwumba, A.O. (2009). Seasonal variations in the abundance and biomass ofmicrocrustaceans in relation to environmental variables in two shallow tropical lakes within the CrossRiver floodplain, Nigeria. Acta Zoologica Lituanica, . 19 (3): 205-215, DOI: 10.2478/v10043-009-0021-8

Okogwu, O.I. (2008). The physicochemistry, plankton and ichthyofauna of Mid-Cross River-floodplainecosystem, southeast, Nigeria. Ph.D. Thesis, Ibadan, Nigeria, pp. 210.

Okogwu, O.I. (2009). Seasonal variations of species composition and abundance of zooplankton in EhomaLake, a floodplain lake in Nigeria. Int. J. Trop. Biol., 58 (1): 171-182.

Okoye, B.S., Obakin, C.E. and Tongo, P.S. (1991). Heavy metals and organism in the Lagos Lagoon. Int. J.Environ. Stud., 37: 285-292.

Ogato, T. (2007). Dynamics of phytoplankton in relation to physico-chemical factors in lake Bishoftu, Ethiopia,M.Sc. Thesis, Ababa University, Ethiopia.

O’Leary, C. and Breen, J. (1998). Seasonal variation of heavy metals in Mytilus edulis, Fucus vesiculosus andsediment from the Shannon estuary. Biology and Environment. In: Proc. Royal Irish Acad., 98 B (3):153-169.

Omkar Singh, Vijaykumar and Rai, S.P. (2005). Water quality aspects of some wells, springs and rivers in partsof the Udhampur District (Jammu and Kashmir). J. Environ. Sci. Engg., 47 (1): 25-32.

Oniye, S.J., Ega, P.A.E., Ajanusi O.J. and Agbede, R.I.S. (2002). Some aspects of the physicochemicalparameters of Zaria Dam, Nigeria. J. Agric. Environ., 3(2): 367-379.

Ontario Ministry of Natural Resources (1993). Ontario Wetland Evaluation System Southern Manual. 3rd Edn.

Onyema, I.C., Otudeko, O.G. and Nwankwo, D.I. (2003). The distribution and composition of plankton arounda sewage disposal site at Iddo, Nigeria. J. Sci. Res. Dev., 7: 11-24.

Onyema, I.C. (2007). The Phytoplankton Composition, Abundance and Temporal Variation of a PollutedEstuarine Creek in Lagos, Nigeria. Turk. J. Fisher. Aqu. Sci., 7: 89-96.

Page 51: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Onyema, I.C. and Ojo, A.A. (2008). The zooplankton dynamics and chlorophyll a concentration of a tropicaltidal creek in relation to water quality indices. Life Sci. J., 5 (4): 7-14.

Onyema, I.C., Nwankwo, D.I. and Owolabi, K.O. (2008). Temporal and spatial changes in the phytoplanktondynamics at the Tarkwa-bay jetty in relation to environmental characteristics. Eco. Environ. Consv., 14(4): 1 – 9.

Onyema, I.C., Nkwoji, J.A. and Eruteya, O.J. (2009). The Water Chemistry and Plankton Dynamics of aTropical High Energy Erosion Beach in Lagos. J. Amer. Sci., 5 (8): 13-24.

Onweremadu, E.U. (2007). Spatial variability of soil carbon in floodplain soils of southeastern Nigeria. Intr. J.Agri. Res., 2 (6): 552-558.

Onwudinjo, C.C. and Egborge, A.B.M. (1994). Rotifers of Benin River, Nigeria. Hydrobiol., 272: 87-94.

Osborne, P.L., Kyle, J.H. and Abramski, M.S. (1987). Effects of seasonal water level changes on the chemicaland biological Limnology of Lake Murray, Papua New Guinea, Australian J. Mar. Freshwater Res. 38:397-408.

Oshisanya, K.I., Unyimadu, J.P., Shelle, R.O.D., Nubi, O.A., Ladigbolu, I.A., Oguguah, N.M., Olumodeji, O.O.,Adeleye A.O. and Fashade, A.O. (2011). Seasonal variation of heavy metals in sediment and water ofLagos Lagoon. J. Amer. Sci., 7 (3): 384-387.

Osman, A.G.M. and Kloas, W. (2010). Water quality and heavy metal monitoring in water, sediments, andtissues of the African Catfish Clarias gariepinus (Burchell, 1822) from the River Nile, Egypt. J.Environ. Prot., 1: 389-400, doi:10.4236/jep.2010.14045.

Ostozic, A.M. (2000). Effect of eutrophication on changes in composition of zooplankton in the Grosnicareservoir (Serbia, Yugoslavia). Hydrobiol., 436: 171 -178.

Ouéda, A.W., Guenda, A.T., Kabré, F., Zongo, F. and Kabré, G.B. (2007). Diversity, abundance and seasonaldynamics of zooplankton community in a South-Saharan Reservoir (Burkina Faso). J. Biol. Sci., 7 (1):1-9.

Ovie, S.I and Adeniji, H.A. (1994). Zooplankton and environmental characteristics of Shiroro Lake at theextremes of its hydrological cycle. Hydrobiol., 286: 175-182.

Özbay, H. and Altındag, A. (2009). Zooplankton abundance in the River Kars, Northeast Turkey: Impact ofenvironmental variables. African J. Biotechnol., 8 (21): 5814-5818.

Pace, M.L. (1986). An empirical analysis of zooplankton size structure across lake trophic gradients. Limnol.Oceanogr., 31: 45-55.

Paira, A. and Drago, E. (2006). Genetical, morphological and evolutional relationships of the floodplain lakes inthe Middle Paraná River hydrosystem. Z. Geomorph. N.E., 145: 207–228.

Paidere, J., Gruberts, D., Skute, A. and Druvietis, I. (2007). Impact of two different flood pulses on planktoniccommunities of the largest floodplain lakes of the Daugava River (Latvia). Hydrobiol., 592: 303–314.

Pandit, A.K. (1993). Dal Lake Ecosystem in Kashmir, Himalaya. In: Mishra, P.C. and Trivedy, R.K. (Eds.),Ecology and Management. Ashish Publishing House. New Delhi. pp. 131-202.

Pande, K.S. and Sharma, S.D. (1999). Studies on water quality index for Ramaganga River at Moradabad – UP.Poll. Res., 18 (3): 327-333.

Page 52: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Pandey, D.K. and Soni, P. (1993). Physicochemical quality of Naukuchiyatal Lake water. Indian J. Environ.Prot., 13 (10): 726-728.

Pandey, B.N., Gupta, A.K., Mishra, A.K. and Jha, A.K. (2000). Ecological Studies on River Panar of Araria(Bihar) with Emphasis on Its Biological Components, Pollution and Biomonitoring of Indian Rivers'.ABD Publication, Jaipur, pp. 130.

Padmanabha, B. and Belagali, S.L. (2008). Ostracods as indicators of pollution in the lakes of Mysore. J.Environ. Biol., 29 (5): 711-714.

Page, H.M., Petty, R.L. and Meade, D.E. (1995). Influence of watershed runoff on nutrient dynamics in asouthern California salt marsh. Estuar. Coast. Shelf Sci., 41: 163–180.

Paggi, J.C. and José de Paggi, S. (1990). Zooplâncton de ambientes lóticos e lênticos do rio Paraná Médio. ActaLimnologica Brasiliensis, 3: 685–719.

Paggi, S.J. (1993). Composition and seasonality of planktonic rotifers in limnetic and littoral regions of afloodplain lake (Paraná river system). Rev. Hydrobiol. Trop., 26 (1): 53-63.

Palaniyappan, N. (1989). Ecological studies on rockpools of Selam and Dharmapuri district in Tamilnadu India.Ph.D. Thesis, University of Madras.

Pandit, S.V., Vaidya, V.V. and Joshi, P.P. (2007). Studies on zooplankton diversity of Pravara river, nearSangamner city, Dist, Ahmedsagar, Maharashtra. J. Aqua. Biol., 22 (2): 33-38.

Paramasivam, S. and Kannan, L. (2005). Physico-chemical characteristics of Muthupettai mangroveenvironment, Southeast coast of India. Int. J. Ecol. Environ. Sci., 31: 273-278

Park, K.S. and Shin, H.W. (2007). Studies on phyto-and-zooplankton composition and its relation to fishproductivity in a west coast fish pond ecosystem. J. Environ. Biol., 28: 415-422.

Pastor, J., Aber, J.D., McClaugherty, C.A. and Melillo, J.M. (1984). Aboveground production and N and Pcycling along a nitrogen mineralization gradient on Blackhawk Island, Wisconsin. Ecology, 65: 256-268.

Passy, S.I. (2007). Diatom ecological guilds display distinct and predictable behaviour along nutrient anddisturbance gradients in running water. Aquat. Bot., 86: 171-178.

Patel, N.R., Prasad, J. and Kumar, S. (2001). Land capability assessment for land use planning using remotesensing and GIS. Agropedol., 11: 1-8.

Patterson, G. and Wilson, K.K. (1995). The influence of diel climatic cycle on the depth-time distribution ofphytoplankton and photosynthesis in a shallow equatorial lake (Lake Baringo, Kenya). Hydrobiol.,304: 1-8.

Patil, C.S. and Gouder, B.Y.M. (1989). Fresh water Invertebrates of Dharwad (Karnataka State, India)Prasaranga. Karnataka University, Dahrwad. pp. 144.

Patil, J.V., Ekhande, A.P. and Padate, G.S. (2011). Study of Lotus Lake: Its abiotic factors their correlation withreference to seasonal changes and altitude. Ann. Biol. Res., 2 (4): 44-56.

Papa, R.D.S. and Zafaralla, M.T. (2011). The composition, diversity and community dynamics of limneticzooplankton in a tropical Caldera lake (Lake Taal, Philippines). The Raffles Bull. Zool., 59 (1): 1–7.

Paul, S.K. and Mazid, M.A. (1997): Limnology of some floodplains in Bangladesh. In: Tsai, C. and Ali, M.Y.(Eds.), Openwater fisheries of Bangladesh, University Press Ltd., Dhaka, pp. 125-136.

Page 53: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Paulose, P.V. and Maheshwari, K. (2008). Seasonal variation in zooplankton community structure in RamgarhLake, Jaipur, Rajashan. In: Sengupta, M. and Dalwani, R (Eds.) Proceedings of Taal 2007: The 12th

World Lake Conference, pp. 82-87.

Paudel, S. and Sah, J.P. (2003). Physiochemical characteristics of soil in tropical sal (Shorea robusta Gaertn.)forests in eastern Nepal. Himalayan J. Sci., 1 (2): 107-110.

Payne, A. (1986). The ecology of tropical lakes and rivers, John Wiley and Sons, New York. pp. 301.

Payne, I. (1997). Tropical floodplain fisheries. In: Tsai C. and Ali, Y. (Eds.) Open water fisheries ofBangladesh. The University Press Limited, Dhaka, pp. 1–26.

Pawar, A.L. (2010). Seasonal Variation in Physicochemical quality of Lonar Lake Water. J. Chem. Pharm. Res.,2 (4): 225-231.

Pawar, S.K. and Pulle, J.S. (2005) Qualitative and quantitative study of zooplankton in Pethwaraj Dam, NandedDistrict (Maharashtra) India. J. Agro. Biol., 20 (2): 53 – 57.

Paerl, H.W. and Tucker, C.S. (1995). Ecology of blue-green algae in aquaculture ponds. J. Wld. Aquacult. Soc.,26 (2): 109-131.

Perumal, N.V. Rajkumar, M. Perumal, P. and Rajasekar, K.T. (2009). Seasonal variations of plankton diversityin the Kaduviyar estuary, Nagapattinam, southeast coast of India. J. Environ. Biol., 30 (6): 1035-1046.

Peterson, C.G. (1996). Response of benthic algal communities to natural physical disturbance. In: Stevenson,R.J. Bothwell, M.L. and Lowe, R.L. (Eds.), Algal ecology, freshwater benthic ecosystems. AcademicPress, San Diego, pp. 375-402.

Perissinotto, R., Walker, D.R., Webb, P. and WooldridgeBally, R. (2000): Relationships between zoo- andphytoplankton in a warm-temperate, semi-permanently closed estuary, South Africa. Estuar. Coast.Shelf Sci., 51: 1-11.

Perez, T., Enriquez, E.E., Guerrero, R.D. III, Simon, D. and Schiemer, F. (2008). Catchment characteristics,hydrology, limnology and socio-economic features of Lake Taal, Philippines. In: Schiemer, F., Simon,D., Amarasinghe, U.S. and Moreau, J. (Eds.), Aquatic ecosystems and development: comparative Asianperspectives. Biology of inland waters series. Backhuys Publishers Leiden. The Netherlands, pp. 63–80.

Pettit, N.E., Bayliss, P., Davies, P.M., Hamilton, S.K., Warfe, D.M. and Bunn, S.E. (2011). Seasonal contrastsin carbon resources and ecological processes on a tropical floodplain. Freshwater Biol., 56: 1047–1064, DOI:10.1111/j.1365-2427.2010.02544.x.

Phukon, P. and Laskar, A.A. (2006). Wetlands Mapping and Change Detection in Parts of Barak Valley usingRemote Sensing and GIS. Map India.

Perotti de Jorda, N.M. (1977). Pigmentos y produccion primaria en el Paraná Medio: Laguna Los matadores(Santa Fe, Argentina). Physis, 36: 89–113.

Phlips, E.J., Havens, K.E. and Lopes, M.R.M. (2008). Seasonal dynamics of phytoplankton in two Amazonflood plain lakes of varying hydrologic connectivity to the main river channel. Fund. Appl. Limnol.,Arch. Hydrobiol., 172 (2): 99–109.

Pinay, G. and DeCamps, H. (1988). The role of riparian woods in regulating nitrogen fluxes between the alluvialaquifer and surface water: a conceptual model. Reg. Rivers: Res. Manag, 2: 507-516.

Pinay, G., Fabre, A., Vervier, P. and Gazelle, F. (1992). Control of C, N, P distribution in soils of riparianforests. Landscape Ecol., 6 (2): 121-132.

Page 54: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Pinay, G., Ruffinoni, C. and Fabre, A. (1995). Nitrogen cycling in two riparian forest soils under differentgeomorphic conditions. Biogeochem., 30 (9): 9–29.

Pinay, G., Black, V.J., Planty-Tabacchi, A.M., Gumiero, B. and Decamps, H. (2000). Geomorphic control ofdenitrification in large river floodplain soils. Biogeochem., 50: 163–182.

Pinto-Coelho, R., Pinel-Alloul, B., Méthot, G. and Havens, K.E. (2005). Crustacean zooplankton in lakes andreservoirs of temperate and tropical regions: variation with trophic status. Can. J. Fish. Aqua. Sci., 62:348-361.

Pip, E. (2005). Surface water quality in Manitoba with respect to six chemical parameters, water body andsediment type and land use. Aquat. Ecosyst. Health Manag. Soc., 8: 1-13.

Piper, C.S. (1944). Soil and Plant Analysis. Inter Science Publication Inc., New York.

Pithart, D. (1995). The Floodplain Ecosystem in the Trebon Biosphere Reserve. Its Biodiversity and Prospectsof Conservation. Final Scientific Report. The MAB Young Scientist Research Grant, pp. 1-13.

Pielou, E.C. (1969). An Introduction to Mathematical Ecology. John Wiley, New York, pp. 286.

Pollingher, U. (1988). Freshwater dinoflagellates: Growth, reproduction strategies, and population dynamics, In:Sandgren, C. (Ed.), Growth and reproductive strategies of freshwater phytoplankton. Cambridge, pp.134-174.

Ponmanickam, P., Rajagopal, T., Rajan, M.K., Achiraman, S. and Palanivelu, K. (2007): Assessment ofdrinking water quality of Vembakottai reservoir, Virudhunagar district, Tamil Nadu. J. Exp. Zool.India, 10: 485-488.

Pourriot, R., Benest, D., Champ, P. and Rougier, C. (1982). Influence de quelques facteurs du milieu sur lacomposition et la dynamique saisonniere du zooplancton de la Loire. Acta Oecologica, 3: 353-371.

Pourriot, R., Rougier, C. and Miquelis, A. (1997). Origin and development of river zooplankton: Example of theMarne. Hydrobiol., 345: 143-148.

Prabhakar, V.M., Garud, V.S., Hansada, S., Vaidya, S. and Basu, A.K. (2008): Seasonal and spatial dynamics ofphytoplankton in Khadakwasla Reservoir, Pune, Maharashtra. In: Sengupta, M. and Dalwani, R. (Eds.),Proceedings of Taal 2007: The 12th World Lake Conf. pp. 2091-2097.

Prach, K., Jenik, J. and Large, A.R.G. (1996). Floodplain Ecology and Management, the Luznice River in theTrebon Biosphere Reserve, Central Europe. SPB Academic Publishing: Amsterdam.

Pragatheeswaran, V., Loganathan, B., Ramesh, A., and Venugopalan, V.K. (1986). Distribution of heavy metalsand organic carbon in sediments off Madras and Visakhapattinam. Mahasagar Bull. Nat. Inst.Oceanogr., 19: 39-44.

Prapurna, N. and Shashikanth, K. (2002). Pollution level in Hussain Sagar Lake of Hyderabad — A case study,Poll. Res., 21 (2):187-190.

Prasannakumari, A.A., Arathy, M.S. and Ganga Devi, T. (2000). Bio-geo-chemical studies of a temple pondwith special reference to macroflora. Poll. Res., 19 (4): 623-631.

Prasannakumari, A.A., Ganga Devi, T. and Sukeskumar, C.P. (2003). Surface water quality of river Neyyar-Thiruvananthapuram, Kerala, India. Poll. Res., 22: 515-525.

Prakash, S., Ansari, K.K. and R.R. Srivastava (2001). Effect of hydrological parameters on the population ofcladoceran and copepods of Motisagar tal, Balrampur, UP. Acta Ecol., 23 (1): 9-12

Page 55: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Prasad, B.N. and Manjula, S. (1980). Ecological study of bluegreen algae in the river Gomti, India. Indian J.Environ. Health., 22: 151–68

Prasad, D.Y. and Qayyam, M.A. (1976). Pollution aspects of Upper Lake Bhopal. Indian J. Zool., 4 (1): 35-46.

Price, J.S. and Waddington. J.M. (2000). Advances in Canadian wetland hydrology and biogeochemistry.Hydrol. Proc., 14: 1579-1589.

Prowse, G.A. and Talling, J.F. (1958). The Seasonal Growth and Succession of Plankton Algae in the WhiteNile. Limnol. Oceanogr., 3: 223 -238.

Puchalski, W. (2003). The importance of accumulated organic matter in nutrient transport and storage infloodplains. In: Proceedings of “International Conference towards the flood reduction strategies”,Warsaw, 6-13 September.

Puckridge, J.T., Sheldon, F., Walker, K.F. and Boulton, A.J. (1988). Flow variability and the ecology of largerivers. Mar. Freshwater Res., 49: 55-72.

Pugnetti, A. and Bettinetti, R. (1999). Biomass and species structure of the phytoplankton of a high mountainlake. J. Limnol., 58 (2): 127-130.

Puri, P.J., Yenkie, M.K.N., Sangal, S.P., Gandhare, N.V. and Sarote, G.B. (2011). Study Regarding Lake WaterPollution with Heavy Metals in Nagpur City (India). Int. J. Chem. Environ. Pharma. Res., 2 (1): 34-39.

Purohit, S.S. and Saxena, M.M. (1990). Water, life and pollution in Physical, Chemical and BiologicalCharacteristics of water. Agro Botanical Publishers (India), New Delhi, pp. 14-29.

Qasim, S.Z. (1977). Contribution of zooplankton in the water environments. Proc. Symp. Water Zool. P. Gao.India. pp. 700-708.

Quan, S.-H., Wang, Y.-G., Luo, S.-Q. and Tang, F.-I. (2004). Effects of the pH value of bed soil on seedlingquality in rice [J]. Hybrid Rice, 19 (4): 45−46. (In Chinese).

Qui, S. and McComb, A.J. (2002). Interrelations between iron extractability and phosphate sorption in re-flooded air-dried sediments. Hydrobiol., 472: 39-44.

Quraishi, S.B., Choudhury, T.R., Khan, S.R. and Mottaleb, M.A. (2010). Season and year-wise distribution ofsome trace metals and anions in Gulshan Lake, Bangladesh. Maejo Int. J. Sci. Technol., 4 (02): 337-346.

Rabalais, N.N. (2002). Nitrogen in aquatic ecosystems. Ambio, 31 (3): 102–112. DOI:10.1639/0044-7447(2002)031[0102:NIAE]2.0.CO;2.

Rafique, R.M., Mahboob, S., Ahmad, M. and Saleem, S. (2002). Seasonal limnological variations in Manglareservoir at Sukhian, Mirpur (Azad Kashmir). Int. J. Agri. Biol., 4 (2): 223-226.

Radhika, C.G., Mini, I. and Gangadevi, T. (2004): Studies on abiotic parameters of a tropical fresh water lake –Vellayani Lake, Trivandrum, Kerala, Poll. Res., 23 (1): 49-63.

Rajagopal, T., Thangamani, A., Archunan, G. and Manimozhi, A. (2006). Studies on diurnal variation certainphysico-chemical parameters and zooplankton components of Chinnapperkovil pond in Sattur. J. Nat.Conserv., 18: 97-105.

Rajagopal, T., Thangamani, A. and Archunan, G. (2010). Comparison of physico-chemical parameters andphytoplankton species diversity of two perennial ponds in Sattur area, Tamil Nadu, J. Environ. Biol.,31 (5): 787-794.

Page 56: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Rajasegar, M. (1998). Environmental inventory on Vellar estuary Southeast coast of India in relation to shrimpfarming. Ph.D. Thesis, Annamalai University, India, pp: 95.

Rajasegar, M., Srinivasan, M. and Rajaram, R. (2000). Phytoplankton diversity associated with the shrimp farmdevelopment in Vellar estuary, south India. Seaweed Res. Utiln., 22: 125-131.

Rajasegar, M. (2003). Physico-chemical characteristics of the Vellar estuary in relation to shrimp farming. J.Environ. Biol., 24: 95-101.

Rajamanickam, G.V. and Setty, M.G.A.P. (1973). Distribution phosphorus and organic carbon in the near shoresediments of Goa. Indian J. Mar. Sci., 27: 84-89.

Rajashekhar, M., Vijaykumar, K. and Zeba, P. (2010). Seasonal variations of zooplankton community infreshwater reservoir Gulbarga District, Karnataka, South India. Int. J. Syst. Biol., 2 (1): 06-11.

Rai, S.P., Kumar, V. Singh, O. and Jain, S.K. (2007). Hydrochemical characteristics of Mansar Lake, Jammuand Kashmir in India. IE (I) Journal–EN, 88: 16-22.

Raj, D.D.P. (2010). Sediment profile of Perumchani reservoir of Kanyakumari District, Tamil Nadu. J. BasicAppl. Biol., (Special Issue: Wetlands), 4 (3): 174-180.

Rahman, S. and Hussain, A.F. (2008). A study on the abundance of zooplankton of a culture and non-culturepond of the Rajshahi University campus. Univ. J. Zool. Rajshahi. Univ., 27: 35-41.

Ramanathan, A.L., Vaithiyanathan, P., Subramanian, V. and Das, B.K. (1994): Nature and transport of soluteload in the Cauvery River Basin, India, Water Res., 28 (7): 1585-1593.

Ramesh, R. and Anbu, M. (1996). Chemical Methods for Environmental Analysis: Water and Sediment.Macmillan India Ltd, pp. 161.

Ramsar Convention (1971). Proceeding, International Wildfowl Research Bureau, Slimbridge, UK.

Ramirez, M., Massolo, S., Frache, R. and Correa, J.A. (2005). Metal speciation and environmental impact onsandy beaches due to E1 Salvador copper mines, Chile. Mar. Poll. Bull., 50: 62-72.

Ramos, L., Fernandez, M.A., Gonzalez, M.J. and Hernandez, L.M. (1999). Heavy metal pollution in water,sediments and earthworms from the Ebro River, Spain. Bull. Environ. Contm. Toxicol., 63: 305-311.

Rana, K.S. (1991). Impact of solar radiation on the aquatic ecosystem. A case study of Soor sarowar, Agra. J.Nat. Environ., 8, 43-49.

Rana, K.S. (1996). Assessment of pollution in the river Jamuna part II phytoplankton. J. Nat. Environ., 13: 41-48.

Rani, R.S. and Reddy, P.M (2003). Preliminary studies on metal concentration on Hussain Sagar Lake, Poll.Res., 22: 377-380.

Rani, R., Gupta, B.K. and Srivastava, K.B.L. (2004). Studies on water quality assessment in Satna city (M.P.):Seasonal parametric variations. Nat. Env. Poll. Tech., 3(4): 563-565.

Raupp, S.V., Torgan, L. and Melo, S. (2009). Planktonic diatom composition and abundance in the Amazonianfloodplain Cutiuaú Lake are driven by the flood pulse. Acta Limnol. Bras., 21 ( 2): 227-234.

Rautio, M. (1998). Community structure of crustacean zooplankton in subarctic ponds – effects of altitude andphysical heterogeneity. Ecography, 21: 327-335.

Page 57: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Rao, N.G.S., David, A., Raghavan, S.L. and Rahman, M.P. (1982). Observations of limnology of a peninsularperennial tank. J. Agric. Sci., 16: 75-84.

Rao, V.S. (1971). An ecological study of three freshwater ponds of Hyderabad — India. I. The environment.Hydrobiol., 38: 213-223.

Rashed, M.N. (2001). Cadmium and lead levels in fish (Tilapia nilotica) tissues as biological indicator for lakewater pollution. Environ. Monit. Assess., 68: 75-89.

Raspopov, I.M., Andronikova, I.N., Dotsenko, O.N., Kurashov, E.A., Letanskaya, G.I., Panov, V.E., Rychkova,M.A., Telesh, I.V., Tchernykh, O.A. and Vorontsov, F.F. (1996). Littoral zone of Lake Ladoga:ecological state evaluation. Hydrobiol., 322: 39–47.

Ravera, O. (1996). Zooplankton and trophic state relationships in temperate lakes. Mem. Ist. Ital. Idrobiol., 54:195-212.

Ravindra, K., Ameena, Meenakshi, Monika, Rani and Kaushik, A. (2003). Seasonal variations in physico-chemical characteristics of River Yamuna in Haryana and its ecological best-designated use, J.Environ. Monit., 5: 419–426.

Ravichandran, K. and Jayaprakash, M. (2011). Seasonal variation on physico-chemical parameters and tracemetals in groundwater of an industrial area of north Chennai, India. Indian J. Sci. Technol., 4 (6): 646-649.

Ray, P., Singh, S.B. and Shegal, K.L. (1966). A study of some aspects of ecology of rivers Ganga and Yamunaat Allahabad (U.P) in 1958-1959. Proc. Nat Acad. Sci. India, 36: 235- 272.

Razzaque, A., Hossain, M.S., Islam, A.K.M.S., Hossain, M.M.M. and Ehshan, M.A. (1995). Study on planktonpopulation of Halti beel at Natore, Bangladesh. Bangladesh J. Aquaculture, 17: 19-23.

Reckendorfer, W., Keckeis, H., Winkler, G. and Schiemer, F. (1999). Zooplankton abundance in the RiverDanube, Austria: the significance of inshore retention. Freshwater Biol., 41: 583 – 591.

Reddy, H.R.V. and Hariharan, V. (1986a). Distribution of nutrients in the sediments of the Netravathi-Gurupurestuary, Mangalore. Ind. J. Fish., 33: 123-126.

Reddy, H.R.V. and Hariharan, V. (1986b). Distribution of total nitrogen, total phosphorus and organic carbon inthe sediments off Mangalore1, Mahasagar, 19 (2): 119-122.

Reich, P.B., Grigal, D.F. Aber, J.D. and Gower, S.T. (1997). Nitrogen mineralization and productivity in 50hardwood and conifer stands on diverse soils. Ecology, 78: 335-347.

Rejas, D., Declerck, S., Auwerkerken, J., Tak, P. and Meester, L.D. (2005). Plankton dynamics in a tropicalfloodplain lake: fish, nutrients, and the relative importance of bottom-up and top-down control.Freshwater Biol., 50, 52–69.

Repka, S. (1996). Inter and intraspecific differences in Daphnia life histories in response to 2 food sources: thegreen alga Scenedesmus and the filamentous cyanobacterium Oscillatoria. J. Plank. Res., 18: 1213-1223.

Reynolds, C.S. (1984). The Ecology of Freshwater Phytoplankton. Cambridge University Press, Cambridge,London, New York, New Rochelle, Melbourne, Sydney, pp. 384.

Reynolds, D.S., Montecino, V., Ceraf, M.E. and Cabrere, S. (1986). Short-term dynamics of a Melosirapopulation in the plankton of an impoundment in central Chile. J. Plankton Res., 8 (4): 715-740.

Page 58: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Reynolds, C.E. (1987). Cyanobacterial water blooms. In: Advances in Botanical Research, Callow, J. (Ed.).Academic Press, London. Vol. 13, pp. 67-143,

Reynolds, C.S. (1988). Functional morphology and the adaptive strategies of freshwater phytoplankton. In:Sandgren, C.D. (Ed.), Growth and Reproductive Strategies of Freshwater Phytoplankton. CambridgeUniversity Press, Cambridge, pp. 388-433.

Reynolds, C.S. (1989). Physical determinants of phytoplankton succession. In: Sommer, U. (Ed.), PlanktonEcology: succession in plankton communities. Springer-Verlag, N.Y., pp. 9-56.

Reynolds, C.S. (1994). The long, the short and the stalled: on the attributes of phytoplankton selected byphysical mixing in lakes and rivers. Hydrobiol., 289: 9-21.

Reynolds, C.S. (1997). Vegetation Processes in the Pelagic: A model for Ecosystem Theory: Excellence inEcology. Ecology Institute, Germany, pp. 371.

Reynolds, C.S. and Lund, J.W.G. (1988). The phytoplankton of an enriched, soft-water lake subject tointermittent hydraulic flushing (Grasmere, English Lake District). Freshwater Biol., 19: 379–404.

Reynolds, C.S. and Reynolds, J.B. (1997). The typical seasonality of phytoplankton in Crose Mere, 1972: anindependent test of the hypothesis that variability in the physical environment regulates communitydynamics and structure. Br. Phycol. J., 20: 227–242

Reynolds, C.S. and Petersen, A.C. (2000). The distribution of planktonic cyanobacteria in Irish lakes in relationto their trophic states. Hydrobiol., 424:91–99. DOI:10.1023/A:1003901012233.

Reynolds, C.S. (2006). The Ecology of Phytoplankton. 1st Edn. England: Fishing News (Books).

Revelante, N. and Gilmartin, M. (1982). Dynamics of phytoplankton in the Great Barrier Reef lagoon. J. Plank.Res., 4: 47-76.

Richardson, C.J. (1989). Freshwater wetlands: Transformers, filters, or sinks? In: Sharitz, R.R. and Gibbons,J.W. (Eds.) Freshwater Wetlands and Wildlife. U.S. Dept. Energy Office Sci. Tech. Info., Oak Ridge,TN. pp. 25-46.

Richardson J.L and M.J. Vepraskas. (2001). Wetlands Soils Genesis, Hydrology, Landscapes, andClassification. Lewis Publishers. Boca Raton, FLA. pp. 85-105.

Roach, J. (2004). Source of half Earth's oxygen gets little credit. National Geographic News, NationalGeographic Society Press.

Roadcap, G.S., Wentzel, M.B., Lin, S.D., Herricks, E.E., Raman, R.K., Locke, R.L. and Hullinger, D.L. (1999).An assessment of the hydrology and water quality of Indian Ridge Marsh and the potential effects ofwetland rehabilitation on the diversity of wetland plant communities. United States EnvironmentalProtection Agency, Contract Report No. 654.

Rocha, R.R.A., Thomaz, S.M., Carvalho, P. and Gomes, L.C. (2009). Modeling chlorophyll-a and dissolvedoxygen concentration in tropical floodplain lakes (Paraná River, Brazil). Braz. J. Biol. (Suppl.), 69 (2):491-500.

Rossa, D.C., Lansac-Toha, F.A., Bonecker, C.C. and Velho, L.F.M. Abundance of cladocerans in the litoralregions of two environments of the upper Paraná river floodplain, Mato Grosso do Sul, Brazil. Rev.Brasil. Biol., 61 (1): 45-53.

Robarts, R.D and Zohary, T. (1984). Microcystis aerugino as and underwater light attenuation inhypereuthrophic lake (Hartbeespoort, South Africa). J. Ecol., 72:1001-1017.

Page 59: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Robertson, A.I., Bunn, S.E., Boon, P.I. and Walker, K.F. (1999). Sources, sinks and transformations of organiccarbon in Australian floodplain rivers. Mar. Freshwater Res., 50 (8): 813-829.

Robinson, C.T., Tockner, K. and Ward, J.V. (2002). The fauna of dynamic riverine landscapes. FreshwaterBiol., 47: 661-677.

Rodrigues, L. and Bicudo, D.C. (2001). Similarity among periphyton algal communities in a lentic-lotic gradientof the upper Paraná river floodplain, Brazil. Revta Brasil. Bot., São Paulo, 24 (3): 235-248.

Rodrigues, L.C., Train, S., Roberto, M.C. and Pagioro, T.A. (2002). Seasonal Fluctuation of Some LimnologicalVariables on a Floodplain Lake (Patos lagoon) of the Upper Paraná River, Mato Grosso do Sul State,Brazil. Brazilian Arch. Biol. Technol., 45 (4): 499-513.

Roelofs, J.G.M. (1991). Inlet of alkaline river water into peaty lowlands: Effects on water quality and Stratiotesaloides L. stands. Aquat. Bot., 39: 267–293.

Roger, P.A. and Reynaud, P.A. (1982). Free living blue-green algae in tropical soils. In: Dommergues, Y. andDiemeds, H. Microbiology of tropical soils and plant productivity. Martinus Nijhoff Publisher LaHague, pp. 147-168.

Rognerud, S. and Kjellberg, G. (1990). Long-term dynamics of the zooplankton community in Lake Mjøsa, thelargest lake in Norway. Verh. Int. Ver. Limnol., 24: 580-585.

Rogozin, A.G. (2000). Specific structural features of zooplankton in lakes differing in trophic status: speciespopulations. Russ. J. Ecol., 31: 405-410.

Roozen, F.C.J.M. (2005). Transparency of floodplain lakes; a study of plankton and suspended matter along thelower Rhine. pp.198.

Roozen, F.C.J.M., Van Geest, G.J., Ibelings, B.W., Roijackers, R.M.M., Scheffer, M. and Buijse, A.D. (2003).Lake age and water level affect turbidity of floodplain lakes along the Lower Rhine. Freshwater Biol.,48, 519-531.

Rosenberg, D.M. and Resh, V.H. (1993). Freshwater biomonitoring and benthic invertebrates New York:Chapman and Hall. pp. 448.

Round, F.E. (1974). The Biology of the Algae. London, Edward Arnold.

Round, F.E. (1991). Diatoms in river water monitoring studies, J. Appl. Phycol., 3 (2): 129-145.

Rouf, A.A., Ambak, M.A., Shamsudin, L., Phang, S.-M. and Ho, S.C. (2008). Temporal changes in theperiphytic algal communities in a Drowned tropical forest reservoir in Malaysia: Lake Kenyir. LakesReserv. Res. Manage., 13: 271-287.

Roy, S.K. and Reddy, R.S. (1997). Classification of soils buried by allochthonous material. J. Indian Soc. SoilSci., 45: 542-547.

Rzoska, J. (1978). On the nature of rivers. Dr. W. Junk, The Hague.

Saad, M A.H. and Antoine, S.E. (1983). Effects of pollution on phytoplankton in the Ashar Canal of the Shattal-Arab Canal, a highly polluted canal of the Shatt al-Arab Estuary at Basrah, Iraq. Hydrobiol., 99 (3):189 –96.

Sabhapandit, P., Saikia, P. and Mishra, A.K. (2010). Statistical analysis of heavy metals from water samples ofTezpur sub-division in Sonitpur District, Assam, India. Int. J. Appl. Biol. Pharma. Technol., 1 (3): 946-951.

Page 60: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Sachidanandamurthy, K.L. and Yajurvedi, H.N. (2008). A study on growth co-efficient and relative conditionfactor of the major carp (Catla catla) in two lakes differing in water quality. Appl. Ecol. Environ. Res.,6 (3): 33-47.

Sah, J.P. (1997). Koshi tappu wetlands: Nepal’s Ramsar site. Kathmandu: IUCN Nepal. pp. 254.

Saha, B.K. and Hossain, M.A. (2002). Soldu beel fishery of Tangail. Bangladesh J. Zool. 30 (20): 187-194.

Saint-Jean, L. (1983). The zooplankton. In: Carmouze, J.P., Durand, J.R. and Leveque, C. (Eds.), Lake Chad:ecology and productivity of a shallow tropical ecosystem, Nigeria. pp. 199-232.

Salomons, W. and Forstner, U. (1980). Trace metal analysis on polluted sediments. II. Evaluation ofenvironmental impact. Environ. Technol. Lett. 1: 506–517.

Salmaso, N. (1996). Seasonal variation in the composition and the rate of change of the phytoplanktoncommunity in a deep subalpine lake (Lake Garda, Northern Italy). An application of nonmetricmultidimensional scaling and cluster analysis. Hydrobiol., 337: 49-68.

Sampathkumar, P and Kannan, L. (1998). Seasonal variation in physico-chemical characteristics in theTranquebar-Nagapattinam Region, South-East coast of India, Poll. Res., 17 (4): 397-402.

Sampaio, E.V. and López, C.M. (1999). Zooplankton community composition and some limnological aspects ofan Oxbow Lake of the Paraopeba River, São Francisco River Basin, Minas Gerais, Brazil.

Sanap, R.R., Mohite, A.K., Pingle, S.D., and Gunale, V.R. (2006). Evaluation of water qualities of GodawariRiver with special reference to physico-chemical parameters. Dist. Nasik (M.S.), India. Poll. Res., 25(4): 775-778.

Sankar, R., Ramkumar, L., Rajkumar, M., Sun, J. and Ananthan, G. (2010). Seasonal variations in physico-chemical parameters and heavy metals in water and sediments of Uppanar estuary, Nagapattinam,India. J. Environ. Biol., 31 (5): 681-686.

Sanjer, L.R. and Sharma, U.P. (1995). Community structure of plankton in Kawar lake wetland, Begusarai,Bihar: II Zooplankton. J. Freshwater Biol., 7: 165-167.

Saravanakumar, A., Rajkumar, M., Sesh Serebiah J. and Thivakaran, G.A. (2008). Seasonal variations inphysico-chemical characteristics of water, sediment and soil texture in arid zone mangroves ofKachchh-Gujarat. J. Environ. Biol., 29: 725-732.

Sarkar, D., Baruah, U., Gangopadhyay, S.K., Sahoo, A.K. and Velayutham, M. (2002). Characteristics andclassification of soils of Loktak command area of Manipur for sustainable land use planning. J. IndianSoc. Soil Sci., 50: 196-204.

Sarmaja-Korjonen, K. and Hyvärinen, H. (1999). Cladoceran and diatom stratigraphy of calcerous lakesediments from Kuusamo, NE Finland. Indications of Holocene lake-level changes. Fennia, 177: 55-70.

Sars, G.O. (1901). On the Crustacean fauna of Central Asia. Part I. Amphipoda and Phyllopoda. Ann. Mus.Zool. Acad. Sci., St. Petersbourg, 4: 130-164.

Saksena, N.D. (1987). Rotifera as indicators of water quality. Acta Hydrochim. Hydrobiol., 15: 481-485.

Sarkkula, J., Koponen, J., Keskinen, M., Kummu, M., Lauri, H., Varis, O. and Virtanen, M. (2005).Hydrological, environmental and socio-economic modelling tools for the Lower Mekong Basin impactassessment. Inception Report of the Phase II of the WUP-FIN project. Mekong River Commission,Vientiane, Lao PDR.

Page 61: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Sastry, K.V., Shukla, V., Abusaria, S. and Gill, P. (2001). Studies on the impact of bicycle manufacturingindustry effluents on soils. Poll. Res., 20 (2): 187-192.

Satheeshkumar, P. and Khan, B.A. (2009). Seasonal variations in physico-chemical parameters of water andsediment characteristics of Pondicherry Mangroves. African J. Basic Appl. Sci., 1 (1-2): 36-43.

Satyanarayana, D., Rao, I.M., and Reddy, B.R.P. (1985). Chemical oceanography of Harbour and coastalenvironment of Viskhapatnam (Bay of Bengal) Part I – Trace metals in water and particulate matter.Indian J. Mar. Sci., 14: 139-146.

Saunders, J.F. III, and William, M.L. Jr. (1988a). Zooplankton abundance in the Caura River, Venezuela.Biotropica, 20 (3): 206-214.

Saunders, J.F. III, and William, M.L. Jr. (1988b). Zooplankton abundance and transport in a tropical white-water river. Hydrobiol., 162: 147-155.

Saxena, M.M. (1982). Limnological studies of freshwater reservoir: Sardarsamand. Ph.D. Thesis, University ofJodhpur, Jodhpur, India.

Saxena, S. (1998). Settling studies on pulp and paper mill waste waters, Ind. J. Environ. Health, 20 (3): 273-280.

Saunders, J.F. and Lewis, W.M. (1988). Zooplankton abundance in the Caura River, Venezuela. Biotropica, 20:206-214.

Saunders, P.A., Porter, K.G. and Taylor, B.E. (1999). Population dynamics of Daphnia spp. and implications fortrophic interactions in a small, monomictic lake. J. Plankton Res., 21 (10): 1823–1845.

Sayed, M.F. and Abdo, M.H. (2009). Assessment of Environmental Impact On, Wadi El-Natrun DepressionLakes Water, Egypt. World J. Fish Mar. Sci., 1 (2): 129-136.

Schagerl, M., Drozdowski, I., Angeler, D.G., Hein, T. and Preiner, S. (2009). Water age – a major factorcontrolling phytoplankton community structure in a reconnected dynamic floodplain (Danube,Regelsbrunn, Austria). J. Limnol., 68 (2): 1-13

Scheffer, M. (1998). Ecology of shallow lakes. Chapman & Hall, New York.

Schlesinger, W.H. (1990). Evidence from chronosequence studies for a low carbon storage potential of soils.Nature (London), 348: 232-234.

Schlensinger, W.H. (1997): Biogeochemistry: An Analysis of Global Change. 2nd Edn. Academic Press. SanDeigo, California.

Schmidt, G.W. (1972). Seasonal chances in water chemistry of a tropical lake (Lago do Castanho, Amazonia,South America). Verh. Internat. Verein. Limnol., 18: 613-621

Schiemer, F. (1995). Revitalisierungsmajnahmen für Augewässer-Möglichkeiten und Grenzen. Arch. fürHydrobiol., 101 (Suppl.) Large Rivers, 9: 383-398.

Schindler D.W. (1987). Detecting ecosystem responses to anthropogenic stress. Canadian J. Fisher. Aquat.Sci., 44: 6–25.

Schiemer, F. (1999). Conservation of biodiversity in floodplain rivers. Arch. für Hydrobiol., (Suppl.) LargeRivers, 115 (3): 423-438.

Page 62: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Schemel, L.E., Sommer, T.R., Müller-Solger, A.B. and Harrell, W.C. (2004). Hydrologic variability, waterchemistry, and phytoplankton biomass in a large floodplain of the Sacramento River, CA, U.S.A.Hydrobiol, 513: 129–139.

Schulte, E.E. and Kelling, K.A. (1914). Understanding Plant Nutrients: Soil and Applied Potassium.Cooperative Extension Publications, University of Wisconsin-Extension. A2521.

Schultze, P.C., Zagarese, H.E. and Williamson, C.E. (1995). Competition between crustacean zooplankton incontinuous cultures. Limnol. Oceanogr., 40: 33-45.

Schuurkes, J.A.A.R., Kempers, A.J. and Kok, C.J. (1988). Aspects of biochemical sulphur conversions insediments of a shallow soft water lake. J. Freshwater Ecol., 4: 369–381.

Schwarz, W.L., Malanson, G.P. and Weirich, F.H. (1996). Effect of landscape position on the sedimentchemistry of abandoned-channel wetlands. Landscape Ecol., 11 (1): 27-38.

Sechi, N., Flocca, F., Sannio, A. and Lugliè, A. (2001). Santa Giusta Lagoon (Sardinia): phytoplankton andnutrients before and after waste water diversion. J. Limnol., 60 (2): 194-200.

Segar, K. and Hariharan, V. (1989). Seasonal distribution of nitrate, nitrite, ammonia and plankton in effluentdischarge area of Mangalore, west coast of India. Ind. J. Mar. Sci., 18: 170-173.

Segers, H., Nwadiaro, C.S. and Dumont, H.J. (1993). Rotifera of some lakes in the floodplain of the river Niger(Imo state, Nigeria). II. Faunal composition and diversity. Hydrobiol., 250: 63-71.

Sellami, I., Romdahane, S.B., Guermazi, W., El Bour, M., Hamza, A., Mhamdi, M.A., Pinel-Alloul, B., Aleya,L. and Ayadi, H. (2012). Seasonal dynamics of plankton communities coupled with environmentalfactors in a semi arid area: Sidi Saâd reservoir (Center of Tunisia). African J. Biotechnol.., 11 (4): 865-877.

Selvarani, B.J. (2009). Food preference of fairy shrimp Streptocephalus dichotomus (Baird) Crustacea:Anostraca. J. Appl. Biosci., 16: 840-844.

Sengar, P., Singh, G.P. and Sharma, K.P. (2009). Seasonal distribution of phytoplankton in Ramgarh reservoir,Jaipur, Rajasthan. Indian J. Environ. Sci. 13 (2): 167-169.

Sept, K.L. and Reynolds, C.S. (1995). Phytoplankton functional attributes along trophic gradient season.Limnol. Oceanogr., 40: 589-597.

Senthilkumar, S., Santhanam, P. and Perumal, P. (2002). Diversity of phytoplankton in Vellar estuary, southeastcoast of India. In: Proc. 5th Indian Fisher. Forum. Ayyapan, J.K. Jena, J.K. and Mohan Joseph, M.(Eds.) Published by AFSIB, Mangalore and AeA, Bhubanewer, India. pp. 245-248.

Senthilkumar, R. and Sivakumar, K. (2008). Studies on phytoplankton diversity in response to abiotic factors inVeeranam Lake in the Cuddalore district of Tamil Nadu. J. Environ. Biol., 29: 747-752.

Senthilnathan, S. and Balasubramanian, T. (1999). Heavy metal distribution in Pondicherry harbour, southeastcoast of India. Indian J. Mar. Sci., 28: 380-382.

Shah, A.R. (1988). Physico-chemical aspects of pollution in River Jhelum (Kashmir) during 1981-83. In:Trivedy, R.K. (Ed): Ecology and pollution of Indian rivers. Ashish publishing House, New Delhi, pp.162-207.

Shah, M.R., Hossain, Y., Begum, M., Ahmed, Z.F., Ohtomi, J., Rahman, M.M., Alam, J., Islam, A. andFulanda, B. (2008). Seasonal variations of Phytoplankton community structure and production inrelation environmental factors of the south west coastal waters of Bangladesh. J. Fisher. Aquat. Sci., 3(2): 102-113.

Page 63: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Shameem, S.A. and Kangroo, I.N. (2011). Comparative assessment of edaphic features and phytodiversity inlower Dachigam National Park, Kashmir Himalaya, India. African J. Environ. Sci. Technol., 5 (11):972-984, DOI: 10.5897/AJEST11.099.

Shannon, C.E. and Weiner, W. (1949). The Mathematical Theory of Communication Urban. Univ. IllinoisPress. Illinois, pp. 125.

Sharma, B.K. (1983). The Indian species of the genus Brachionus (Eurotatoria: Monogononta: Brachionidae).Hydrobiol., 104: 31-39.

Sharma, B.K. (2000). Rotifers from some tropical flood-plain lakes of Assam (N.E. India). Trop. Ecol. 41 (2):175-181.

Sharma, U.C. (2002). Land-use options for the flood plains of the northeastern region of India. In: TheStructure, Function and Management Implications of Fluvial Sedimentary Systems. Proc. Int. Symp.Alice Springs. Australia, September 2002. IAHS Publ. no. 276. 2002.

Sharma, B.K. (2004). Phytoplankton communities of a floodplain lake of the Brahmaputra river basin, UpperAssam. J. Indian Fisher. Assoc., 31: 27-35.

Sharma, S. (2006). Rotifer diversity (Rotifera: Eurotatoria) of floodplain lakes of Pobitora Wild-Life Sanctuary,Assam. Records Zool. Surv. India, 106 (3): 76-89.

Sharma, B.K. (2009). Composition, abundance and ecology of phytoplankton communities of Loktak Lake,Manipur, India. J. Threat. Taxa, 1 (8): 401-410.

Sharma, B.K. (2010a). Phytoplankton diversity of two floodplain lakes (pats) of Manipur, northeastern India. J.Threat. Taxa, 2 (11): 1273-1281.

Sharma, B.K. (2010b): Rotifer communities of Deepor Beel, Assam, India: richness, abundance and ecology. J.Threat. Taxa, 2 (8): 1077-1086.

Sharma, S. and Mathur, R. (1992). A comprehensive study of Entomo fauna in Mesosaprobic systems inGwalior, J. Natcon., 4 (2): 39-54.

Sharma, R.K. and Rathore, V. (2000). Pollution ecology with reference to commercially important fisheriesprospect in a rural based water body: The lake Sarsai Nawar, Etawah in U.P. (India). Poll. Res., 19 (4):641-644.

Sharma, B.K. and Lyngdoh, R.M. (2003). Abundance and ecology of net and phytoplankton of a subtropicalreservoir of Meghalaya (NE. India), Eco. Env. Consv., 9 (4): 485-491.

Sharma, L.L. and Sarang, N. (2004). Physico-chemical limnology and productivity of Jaisamand Lake, Udaipur(Rajasthan), Poll. Res., 23 (1): 87-92.

Sharma, R.K., Swami, B.N., Shyampura, R.L., Giri, J.D. and Singh, S.K. (1996). Characterization of some soilsof Haldi Ghat region of Rajasthan in relation to land physiography. J. Indian Soc. Soil Sci., 47 (2): 329-333.

Sharma, B.D., Sidhu, P.S., Raj Kumar and Sawhney, J.S. (1997). Characterization, classification and landscaperelationships of Inceptisols in North-West India. J. Indian Soc. Soil Sci., 45: 167-173.

Sharma, B.K. and Sharma, S. (1999). Freshwater Rotifers (Rotifera: Eurotatoria), pp. In: State Fauna Series:Fauna of Meghalaya, Zool. Surv. India, Calcutta, 4 (9): 11-161.

Page 64: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Sharma, B.K. and Sharma, S. (2000). Freshwater Rotifers (Rotifera: Eurotatoria), pp.163-224. In: State FaunaSeries: Fauna of Tripura 7 (4). Zoological Survey of India, Calcutta.

Sharma, B.K. and Sharma, S. (2001). Biodiversity of Rotifera in some tropical floodplain lakes of theBrahmaputra river basin, Assam (N.E. India). Hydrobiol., 446 / 447: 305-313.

Sharma, B.K. and Sharma, S. (2005). Faunal diversity of Rotifers (Rotifera: Eurotatoria) of Deepor beel, Assam(N.E. India) - a Ramsar site. J. Bombay Nat. History Soc., 102 (2): 169-175.

Sharma, S. and Sharma, B.K. (2008). Zooplankton diversity in floodplain lakes of Assam. Records of theZoological Survey of India, Occasional Paper No. 290: 1-307.

Sharma, B.K. and Sharma, S. (2009). Diversity of microcrustacea (Crustacea: Branchiopoda) of Loktak Lake, aRamsar site, Manipur, India. J. Threat. Taxa, 1 (11): 541-548.

Sharma, A. and Biwsas, S.P. (2002). Comparative account of carbon, nitrogen and phosphorus of two wetlandsof upper Brahmaputra valley Assam.

Sharma, V., Sharma, M., Malara, H., Sharma, R. and Baghela, B.S. (2008). Trophic status and zooplanktondiversity of Lake Jaisamand in Relation to its physico-chemical characteristics, In: Sengupta, M. andDalwani, R. (Eds.). Proceedings of Taal 2007: The 12th World Lake Conference, pp. 490-495.

Sharma, A., Ranga, M.M. and Sharma, P.C. (2010). Water Quality Status of Historical Gundolav Lake atKishangarh as a Primary Data for Sustainable Management, South Asian J. Tour. Herit., 3 (2): 149-158.

Sharma, R. and Capoor, A. (2010). Seasonal variations in physical, chemical and biological parameters of lakewater of Patna Bird Sanctuary in relation to fish productivity. World Appl. Sci. J., 8 (1): 129-132.

Sharpley, A.N. and Menzel, R.G. (1987). The impact of soil and fertilizer phosphorus on the environment. Adv.Agronomy, 41: 285–297.

Shapiro, J. (1997). The role of carbon dioxide in the initiation and maintenance of bluegreen dominance inlakes, Freshwater Biol., 37: 307-323.

Shashikumar, K.C., Madhyastha, M.V. and Rekha, P.D. (2002). Distribution and occurrence of diatomcommunity along three estuaries of Dakshina Kannada, West Coast of India. Indian J. Environ. Health,44 (4): 258–265.

Shayestehfar, A. and Seyfoddin, V. (2010). Diurnal fluctuations in population density of Ostracoda in relation tosome physical and chemical parameters from Yassbolagh Dam, Yassbolagh village, Markazi, Iran. Int.J. Lakes d Rivers, 3 (1): 119-125.

Shekhar, R.T., Kiran, B.R., Puttaiah, E.T. Shivaraj Y. and Mahadevan K.M. (2008). Phytoplankton as index ofwater quality with reference to industrial pollution. J. Environ. Biol., 29: 233-236.

Shiddamallayya, N. and Pratima, M. (2008). Impact of domestic sewage on fresh water body. J. Environ. Biol.,29: 303-308.

Sholokovitz, E.R. (1978). Flocculation of dissolved organic and inorganic matter during the mixing of river andseawater. Geochimica et Cosmochimica Acta, 40: 831–45.

Shourkaie, S.G., Chaichi, M.R., Saravi, M.M., Hosseini, H.M.S. and Lotfollahi, M. (2007). Evaluation ofgrazing intensity effects on organic matter content and mineral nutrients recycling in rangeland soils(Case study: Mirza Bailue Rangelands, Golestoan Province, Iran). American-Eurasian J. Agric.Environ. Sci., 2 (5): 504-510.

Page 65: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Shayam, R. (1991). Comparative dynamics of zooplankton in a tropical freshwater swamp and in newlyconstructed pond in swampy area. J. Appl. Zool. Res., 2 (2): 80-84.

Siderius, W. (1992). Soil derived land qualities SOL. 48. Soil Science Division, Department of Land Resourcesand Urban Science, International Institute of Aerospace Survey and Earth Sciences, The Netherlands.pp. 37–84.

Silva, I.G., Moura, A.N., Dantas, E.W. and Bittencourt-Oliveira, M.C. (2010). Structure and dynamics ofphytoplankton in an Amazon lake, Brazil. Rev. Biol. Trop., (Int. J. Trop. Biol.) 58 (4): 1421-1436.

Singh, V.P. (1960). Phytoplankton ecology of the inland waters of Utter Pradesh. Proc. Symp. Algae, ICAR,New Delhi, pp. 243-271.

Singh, T.S. (2010). NE home to 5% of country's wetlands. Space Application Centre (ISRO), Ahmedabad,India.

Singh, R.P. and Balasingh, G.S.R (2011). Limnological studies of Kodaikanal Lake (Dindugal District), inspecial reference to phytoplankton diversity. Indian J. Fund. Appl. Life Sci., 1 (3): 112-118.

Singh, R.P. and Mathur, P. (2005). Investigation of variations in physicochemical characteristics of a fresh waterreservoir of Ajmer city, Rajesthan, Indian. J. Environ. Sci., 9: 57-61

Singh, S.P., Pathak, D. and Singh, R. (2002). Hydrobiological studies of two ponds of Satna (M.P), India. Ecol.Environ. Consv., 8: 289-292.

Singh, M., Lodha, P and Singh, G.P. (2010). Seasonal Diatom Variations with Reference to Physico-chemicalProperties of Water of Mansagar Lake of Jaipur, Rajasthan, Res. J. Agri. Sci., 1 (4): 451-457.

Singh, D.F., Rai, M.K. (1984). Studies on the ecology of engineering College Lake of Jabalpur (M.P.). J. Env.Biol., 5 (3): 165-168.

Singh, R. and Nayak, A.K. (1999). Water retention and transmission characteristics of Mahi Right Bank CanalCommand Area of Gujarat. J. Indian Soc. Soil Sci., 47: 9-15.

Singh, B.N. and Rai, S. (1999). Physico-chemical studies of Ganga River at Varanasi, J. Environ. Poll., 6 (1):43-46.

Singhal, R.N., Swaranjeet and Davies, R.W. (1986). The physicochemical environment and the plankton ofmanaged ponds in Haryana, India. Proc. Ind. Acd. Ani. Sci., 95: 353-364.

Sinha, U.K. (1986). Ganga Pollution and Health Hazard. Inter-India Publication, New Delhi.

Sinha, M.P. (1988). Effect of waste disposal on water quality of river Damodar (Bihar), Physico-chemicalcharacteristics. In: Trivedy, R.K. (Ed), Ecology and Pollution of Indian Rivers, Ashish PublishingHouse, New Delhi.

Sinha, A.K., Baruah, A., Singh, D.K. and Sharma, U.P. (1994). Biodiversity and pollution status in relation tophysico-chemical factors of Kawar lake Begusarai), North Bihar. J. Freshwater Biol., 6: 309-331.

Sinha, D.K. (2004). Level of some heavy metals in waters from Sai River at Rae Bareli, India for the pre-monsoon period and after onset of monsoon. Poll. Res., 23: 113-116.

Sinha, B. and Islami, M.R. (2002). Seasonal variation in zooplankton population of two lentic bodies and AssamState Zoo cum Botanical garden, Guwahati, Assam. Ecol. Environ. Consv., 8: 273-278

Page 66: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Sippel, S.J., Hamilton, S.K. and Melack, J.M. (1992). Inundation area and morphometry of lakes on the AmazonRiver floodplain, Brazil. Arch. für Hydrobiol., 123: (4), 385-400.

Sipaúba-Tavares, L.H., Millan, R.N. and Santeiro, R.M. (2010). Characterization of a plankton community in afish farm. Acta Limnologica Brasiliensia, 22 (1): 60-69, DOI:10.4322/actalb.02201008.

Sivakumar, K. and Karuppasamy, R. (2008). Factors Affecting Productivity of Phytoplankton in a Reservoir ofTamilnadu, India Am.-Euras. J. Bot., 1 (3): 99-103.

Sivasankaran, K., Mithyantha, M.S., Natesan, S. and Subbarayappa, C.T. (1993). Physicochemical propertiesand nutrient management of red and lateritic soils under plantation crops in Southern India. NBSSPublications, 37, pp. 280.

Smart, G.R. (1978). Investigations of toxic mechanisms of ammonia to fish gas exchange in rainbow trout(Salmo gairdneri) exposed to acutely lethal concentrations. – J. Fish Biol., 12 (1): 93-104.

Smith, V.H. (1986). Light and nutrient effects on the relative biomass of blue-green algae in lake phytoplankton.Can. J. Fish. Aquat. Sci., 43: 148–153.

Smirnov, N.N. (1974). Fauna of the U.S.S.R: Crustacea. 1. Chydoridae. Jerusalem : Academy of Sciences of theUSSR.

Smirnova, T.S. (1987). Zooplankton. In: Petrova, N.A. and Raspletina, G.F. (Eds.), Present state of the LakeLadoga ecosystem. Nauka, Leningrad, pp.119–126. (In Russian).

Smolders, A.J.P., Nijboer, R.C. and Roelofs, J.G.M. (1995). Prevention of sulphide accumulation and phosphatemobilization by the addition of iron (II) chloride to a reduced sediment: An enclosure experiment.Freshwater Biol., 34: 559–568.

Sollins, P., Homann, P. and Caldwell, B.A. (1996). Stabilization and destabilization of soil organic matter:Mechanisms and controls. Geoderma, 74: 65-105.

Sollins, P., Swanston, C., Kleber, M., Filley, T., Kramer, M., Crow, S., Caldwell, B.A., Lajtha, K. and Bowden,R. (2006). Organic C and N stabilization in a forest soil: Evidence from sequential densityfractionation. Soil Biol. Biochem., 38: 3313-3324.

Solanki, R., Mandloi, A .K. and Dubey, K.K. (2004). Length-Weight relationship & condition factor inCirrhinus mrigala (Ham.) from a pond in Jabalpur. Nat. J. Life Sci., 1 (1): 101-106.

Solanki, V.R., Hussain, M.M. and Raja, S.S. (2010). Water quality assessment of Lake Pandu Bodhan, AndhraPradesh State, India. Environ. Monit. Assess., 163: 411–419, DOI: 10.1007/s10661-009-0844-6

Solai, A., Suresh Gandhi, M. and Sriram, E. (2010). Implications of physical parameters and trace elements insurface water off Pondicherry, Bay of Bengal, South East Coast of India. Int. J. Environ. Sci., 1 (4):529-542.

Somani, V. and Pejawar, M. (2004). Crustacean zooplankton population of the lake Masunda ,Thane,Maharashtra. J. Aqua. Biol., 19 (1): 57-56.

Somers, K.M. and Harvey, H.H. (1984). Alteration of Lake fish communities in response to acid precipitationand heavy-metal loading near Wawa, Ontario, Canada. J. Aquat. Sci., 41: 20-29.

Sommer, U. (1981). The role of r- and k- selection in the succession of phytoplankton in Lake Constance. ActaOecol., 2: 327-342.

Page 67: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Sommer, U., Gliwicz, Z.M., Lampert, W. and Duncan, A. (1986). The PEG-model of seasonal succession ofplanktonic events in fresh waters. Arch. Hydrobiol., 106: 433-471.

Sommer, U. (1988). Growth and survival strategies of planktonic diatoms. In: Sandgren, C.D. (Ed.), Growth andReproductive Strategies of Freshwater Phytoplankton Cambridge University Press, Cambridge. pp.227–260.

Sommer, U. (1989). The role of competition for resources in phytoplankton succession. In: Sommer, U. (Ed.),Plankton Ecology: Succession is Plankton Communities. Springer, Berlin. pp. 57–106.

Sommer, U., Padisak, J., Reynolds, C.S. and Nagy, P.J. (1993). Hutchinson's heritage: the diversity-disturbancerelationship in phytoplankton. Hydrobiol., 249: 1-7.

Sondergaard, M. and Sand-Jensen, K. (1979). Physicoorganisms, chemical environment, phytoplankton biomassand production in oligotrophic software lake Kalgaard, of Denmark. Hydrobiol., 63: 241-253.

Sorgensen, H. (1948). Studies on the ecology of Danish water and bog mosses, Dansk. Bot. Ar. K., 12: 10.

Soundarapandian, P., Premkumar, T. and Dinakaran, G.K. (2009). Studies on the physico-chemicalcharacteristic and nutrients in the Uppanar Estuary of Cuddalore, South East Coast of India. Curr. Res.J. Biol. Sci., 1 (3): 102-105.

Spence, D.H.N. (1964). The macrophytic vegetation of freshwater Loch. In: the Vegetation of Scotland. Burnell,A.H. (Ed.) Oliver and Boyd, Edinburg and London. pp. 306-425.

Spink, A., Sparks, R.E., Van Oorschot, M. and Verhoeven, J. (1998). Nutrient dynamics of large riverfloodplains. Reg. Rivers: Res. Manag., 14: 203-216.

Sreenivasan, A. (1965). Limnology and productivity of tropical upland impoundments in Nilgiris, Madras stateIndia. Phycos, 7 (1): 146-160.

Sreenivasan, A. (1967). The limnology of fish production in two lakes in Chinglipat (Madras). Hydrobiol., 32:131-144.

Sreenivasan, A. (1974). Limnological features of a tropical impoundment, Bhavanisagar Reservior (TN), India.Int. Revne. Ges. Hydrobiol., 59 (3): 327-342.

Sreenivasan, A. (1976). Fish production and fish population changes in some South Indian reservoirs, Ind. J.Fish., 23 (1-2): 133-152.

Srivastava, N., Agrawal, M. and Tyagi, A. (2003). Study of physico- chemical characteristics of water bodiesaround Jaipur. J. Environ. Biol., 24 (2):177-180.

Srivastava, S.K. (2007). Groundwater quality in parts of Uttarakhand Groundwater 2007. Proc. Nat. Sem. Agri.Dev.Rur.Drinking Water, Vol II Bhopal, India, 305-312.

Stockman, E.K.D. (2007). Physico-chemical evaluation and functional assessment of native wetland soils andorganic amendments for freshwater mitigation wetlands. M.Sc. Thesis, Division of Plant and SoilSciences, University of Massachusetts Amherst.

Stanford, J.A., Lorang, M.S. Hauer, F.R. (2005). The shifting habitat mosaic of river ecosystems.Verhandlungen der Internationalen Vereinigung für Limnologie, 29: 123-136.

Stansfield, J.H., Perrow, M.R., Tench, L.D., Jowitt, A.J.D. and Taylor, A.A.L. (1997). Submerged macrophytesas refuges for grazing Cladocera against fish predation: observations on seasonal changes in relation to

Page 68: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

macrophyte cover and predation pressure. Hydrobiol., 342/343: 229-240, DOI:10.1023/A:1017091407556

Stemberger, R.S. and Lazorchak, J.M. (1994). Zooplankton assemblage responses to disturbance gradients. Can.J. Fish. Aquat. Sci., 51: 2435-2447.

Stephen, K., Sencindiver, J. and Skousen, J. (2003). Characteristics of wetland soil impacted by acid minedrainage. West Virginia University, Division of Plant and Soil Sciences, Report is available from theWest Virginia University, National Research Center for Coal and Energy, Morgantown, West Virginia.

Stević, F., Mihaljević, M. and Horvatić, J. (2005). Interactions between microphytoplankton of the Danube, itssidearms and wetlands (1426–1388 r. km, Croatia). Periodicum Biologorum, 107: 299–304.

Stockman, E.K.D. (2007). Physico-chemical evaluation and functional assessment of native wetland soils andorganic amendments for freshwater mitigation wetlands. M.Sc. Thesis, Division of Plant and SoilSciences, University of Massachusetts Amherst.

Stolt, M.H., Genthner, M.H., Daniels, W.L., Groover, V.A., Nagle, S. and Haering, K.C. (2000). Comparison ofsoil and other environmental conditions in constructed and adjacent palustrine reference wetlands.Wetlands, 20: 671-683.

Storelli, M. M., Storelli, A., D’ddabbo, R., Marano, C., Bruno, R. and Marcotrigiano, G. O. (2005). Traceelements in loggerhead turtles (Caretta caretta) from the eastern Mediterranean Sea: Overview andevaluation. Environ. Poll., 135: 163–170.

Stronkhorst, J., Brils, J., Batty, J., Coquery, M., Gardner, M., Mannio, J., O'Donnell, C., Steenwijk, J. andFrintrop, P. (2004). Discussion document on Sediment Monitoring Guidance for the EU WaterFramework Directive. Version 2. EU Water Framework Directive Expert group on Analysis andMonitoring of Priority Substances. 25 May, 2004.

Subramanian, V., Biksham, G. and Ramesh, R. (1987). Environmental geology of peninsular river basins ofIndia, J. Geol. Soc. India, 30: 393-401.

Sukumaran, P.K. and Das, A.K. (2002). Plankton abundance in relation to physico chemicals features in apeninsular man made lake. Environ. Ecol., 20 (4), 873-879.

Sukumaran, and Das, A.K. (2005). Limnology and fish production efficiency of selected reservoirs ofKarnataka. – Indian J. Fish., 52 (1): 47-53.

Sunkand, B. N and Patil, H. S. (2004). Water quality assessment of fort Lake of Belgaum (Karnataka) withspecial reference to zooplankton, J. Environ. Biol., 25 (1): 99-102.

Sugunan, V.V. (1995). Floodplain lakes a fisheries prospective. In: Howes, J.R. (Ed.), Conservation andSustainable Use of Floodplain Wetlands. Asian Wetland Bureau, Kuala Lumpur, AWB Publication,113: 67-75.

Sugunan, V.V. and Bhattacharjya, B.K. (2000). Ecology and fisheries of beels in Assam,” Bull. Cent. InlandFish. Res. Inst. Barrackpore, 104: 1–65.

Sundaray, S.K. (2010). Application of multivariate statistical techniques in hydro geochemical studies — a casestudy: Brahmani–Koel River (India). Environ. Monit. Assess., 164:297–310, DOI 10.1007/s10661-009-0893-x

Suthar, S., Sharma, J., Chabukdhara, M. and Nema, A.K. (2010). Water quality assessment of river Hindon atGhaziabad, India: impact of industrial and urban wastewater. Environ. Monit. Assess., 165: 103–112,DOI 10.1007/s10661-009-0930-9

Page 69: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Suvarna, A.C. and Somashekar, R.K. (1997). Ecological study on the riverine ecosystem of Karnataka, 1.Physico-chemical characteristics of river Cauvery, J. Environ. Poll., 4 (1): 57-63.

Swale, E.M.F. (1969). Phytoplankton in two English Rivers. J. Ecology, 57: 1–23.

Sylvester, R.O. (1961). Nutrient content of drainage water from forested urban and agriculture areas. Tech. Rep.Taft. Saint. Engng. Centre , W-61 (3): 80-88.

Szefer, P., Ikuta, K., Kushiyama, S., Frelek, K. and Geldon, J. (1997). Distribution of trace metals in the pacificoyster, Crassostrea gigas and crabs from the East Coast of Kysha Island, Japan. Bull. Environ. Contm.Toxicol., 58: 108-114.

Szlauer-Lukaszewska, A. (2008). Migration of ostracods (Crustacea) in the flood zone of a big lowland river inthe case of a rapid water rise. Natura Montenegrina, Podgorica, 7 (2): 325-334.

Tabasum, D. and Trisal, C.L. (2009). Progressive changes in phytoplankton community structure in urbanizedlowland river floodplains - A multivariate approach. River Res. Applic., 25: 1109–1125, DOI:10.1002/rra.1206.

Talling, J.F. (1966). The annual cycle of stratification and phytoplankton growth in Lake Victoria (East Africa).Int. Rev. Ges. Hidrobiol. , 51 (4): 545-621.

Talling, J.F. (1976). The depletion of carbon dioxide from lake water by phytoplankton. J. Ecol., 64: 79-121.

Talling J.F. (1986). The seasonality of phytoplankton in African lakes [in:] Seasonality of FreshwaterPhytoplankton, Munawar, M., Talling, J.F. (Eds.), Development in Hydrobiol., 33: 139-160

Talling, J.F. and Parker, J.E. (2002). Seasonal dynamics of phytoplankton and phytobenthos, and associatedchemical interactions, in a shallow upland lake (Malham Tarn, Northern England). Hydrobiol., 487:167-181.

Taheruzzaman, Q. and. Kushari, D.P. (1995). Study of some physico-chemical properties of the different waterbodies in Burdwan with special reference to effluents resulting from anthropogenic activities, IJEP ,15(5): 344-349.

Takamura, N., Kadono, Y., Fukushima, M., Nakagawa, M., and Kim, B.-H.O. (2003). Effects of aquaticmacrophytes on water quality and phytoplankton communities in shallow lakes. Ecol. Res., 18: 381–395.

Taniguchi, G.A., Bichudo, D.D. and Senna, P.A.C. (2004). Abiotic variables in littoral-limnetic gradient of anOxbow lake of Mogi-Guacu River floodplain, southeastern, Brazil. Brazilian Arch. Biol. Technol., 47(5): 961-971.

Tarras-Wahlberg, N.H., Flacier, A., Fredriksson, G., Lane, S., Lundberg, B. and Sangfors, O. (2000).Environmental impact of small-scale and artisanal gold mining in Southern Ecuador. Ambio., 29 (8):484-491.

Tavernini, S., Nizzoli, D., Rossetti, G. and Viarli, P. (2009). Trophic state and seasonal dynamics ofphytoplankton communities in two sand-pit lakes at different successional stages. J. Limnol., 68 (2):217-228, DOI: 10.3274/JL09-68-2-06.

Tasevska, O., Kostoski, G. and Guseska, D. (2010). Rotifers Based Assessment of the Lake Dojran WaterQuality. BALWOIS 2010 – Ohrid, Republic of Macedonia – 25: 1-8.

Tay, C.K., Asmah, R. and Biney, C.A. (2009). Trace Metal Levels in Water and Sediment from the Sakumo IIand Muni Lagoons, Ghana. West African J. Appl. Ecol., 16: 75-94.

Page 70: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Telesh, I. V. (1999): Species diversity and spatial distribution of the summer rotifer assemblages in LakeLadoga. Boreal Environ. Res., 4: 257–262.

Tepe, Y., Türkmen, A., Mutlu, E. and Ate, A. (2005). Some Physicochemical Characteristics of Yarseli Lake,Hatay, Turkey, Turkish J. Fish. Aqu. Sci., 5: 35-42.

Thadeus, I.T.O. and Lekinson, A.M. (2010). Zooplankton-based assessment of the trophic state of a tropicalforest river. Intern. J. Fisher. Aqua., 2 (2): 064-070.

Thenkabail, P.S. and Nolte, C. (1995). Mapping and characterizing inland valley agro- ecosystems of west andcentral Africa: A methodology integrating remote sensing, global position system, and ground-truthdata in a geographic information systems framework. Resource and Crop Management ResearchMonograph No. 16. Ibadan, Nigeria, IITA. pp. 52.

Thomas, S., Cecchi, P., Corbin, D. and Lemoalle, J. (2000). The different primary producers in a small Africantropical reservoir during a drought: temporal changes and interactions. Freshwater Biol., 45: 43-56.

Thomaz, S.M., Pagioro, T.A., Bini, L.M., Roberto, M.C. and Rocha, R.R.A. (2004). Limnology of the UpperParaná Floodplain habitats: patterns of spatio-temporal variations and influence of the water levels. In:Thomaz, S.M., Agostinho, A.A. and Hahn, N.S. (Eds.), The Upper Paraná River and its floodplain:physical aspects, ecology and conservation. Leiden: Backhuys Publishers. pp. 76-102.

Thomaz, SM., Bini, L.M. and Bozelli, R.L. (2007). Floods increase similarity among aquatic habitats in river-floodplain systems. Hydrobiol., 579 (1): 1-13.

Thoms, M.C., Foster, J.M. and Gawne, B. (2000). The role of erosion and sediment transport in nutrient andcontaminant transfer. In: Proc. Symp. Waterloo, Canada, July 2000, IAHS, 263: 227-236.

Thompson, Y. Sandefur, B.C., Miller, J.O. and Karathanasis, A.D. (2007). Hydrologic and edaphiccharacteristics of three mountain wetlands in southeastern Kentucky, USA. Wetlands, 27 (1): 174-188,DOI: 10.1672/0277-5212(2007)27[174: HAECOT]2.0.CO;2.

Thorp, J.P., Black, A.R. and Haag, K.H. (1994). Zooplankton assemblages in the Ohio River. Seasonal,tributary, and navigation dam effects. Canadian J. Fisher. Aquat. Sci., 51: 1634-1643.

Timms R.M. and Moss B. (1984). Prevention of growth of potentially dense phytoplankton populations byzooplankton grazing in the presence of zooplanktivorous fish in a shallow wetland ecosystem. Limnol.Oceanogr., 29: 472-486.

Timms, B.V. (2001). Large freshwater lakes in arid Australia: A review of their limnology and threats to theirfuture. Lakes Reservoirs: Res. Manag., 6: 183–196.

Tiwari, D.R. (1999). Physico-chemical studies of the Upper Lake water of Bhopal, MP India, Poll. Res., 18 (3):323-326.

Tiwari, A. and Chauhan, S.V.S. (2006). Seasonal phytoplanktonic diversity of Kitham Lake, Agra. J. EnvironBiol., 27 (1): 25–38.

Tiwari, L.R. and Nair, V.R. (1991). Contribution of zooplankton to the fishery of Dharamtar creek, adjoiningBombay harbour. J. Indian. Fish. Ass., 21: 15-19.

Tockner, K., Schiemer, F. and Ward, J.V. (1998). Conservation by restoration: the management concept for ariver-floodplain system on the Danube River in Austria. Aquat. Conserv. Mar. Freshwater Ecosyst., 8(1): 71-86.

Page 71: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Tockner, K., Pennetzdorfer, D., Reiner, N., Schiemer, F. and Ward, J.V. (1999). Hydrological connectivity, andthe exchange of organic matter and nutrients in a dynamic river floodplain system (Danube, Austria).Freshwater Biol., 41: 521-535.

Tockner, K., Baumgartner, C., Schiemer, F. and Ward, J.V. (2000a). Biodiversity of a Danubian floodplain:structural, functional and compositional aspects. In: Gopal, B. Junk, W.J. and Davis, J.A. (Eds.),Biodiversity in Wetlands: Assessment, Function and Conservation. Vol.-1, Backhuys Publishers,Leiden, the Netherlands, pp. 141-159.

Tockner, K., Malard, F. and Ward, J.V. (2000b). An extension of the flood pulse concept. Hydrol. Proc., 14:2861-2883.

Tockner, K., and Stanford, J.A. (2002). Riverine flood plains: present state and future trends. Environ. Conserv.,29: 308-330.

Toufeek, M.A.F. and Korium, M.A. (2009). Physicochemical Characteristics of Water Quality in Lake NasserWater, Global J. Environ. Res., 3 (3): 141-148.

Townsend, C.R., Harper, J.L. and Begon, M. (2000). Essentials of Ecology. 3rd Edn. Blackwell SciencePublishers, London, pp. 169.

Townsend, S.A. (2006). Hydraulic phases, persistent stratification, and phytoplankton in a tropical floodplainlake (Mary River, northern Australia). Hydrobiol., 556: 163–179.

Tomer, J.M.S., Satapathy, K.K. and Dhyani, S.K. (2002). Integrated approach of RS and GIS in characterizationand evaluation of natural resources for watershed management in UWS, Meghalaya. Indian J. SoilConsv., 33 (3): 206-213.

Thornton, J.A. (1980). A Comparison of the Summer Phosphorus Loadings to Three Zimbabwean Water-Supply Reservoirs of Varying Trophic States. Water SA, 6 (4): 163-170.

Thornton, J.A. (1987). A review of some unique aspects of the limnology of shallow Southern African man-made lakes. Geo. J., 143: 339- 352.

Trenttin, C.C. and Jurgensen, M.F. (2003). Carbon cycling in wetland forest soils. pp. 311-331. In: Kimble,J.M., Health, L.S., Birdsey, R. and Lal, R. (Eds.), The Potential of U. S. Forest Soil to SequesterCarbon and Mitigate the Greenhouse Effect. Lewis Publishers, CRC Press. Boca Raton, Florida.

Trivedy, R.K. (1989). Limnology of freshwater ponds in Mangalore, National Symposium on advanced inlimnology conservation of endangered fish species, October 23-25, 1989, Srinagar, Garhwal.

Train, S. and Rodrigues, L.C. (1997). Distribuição espaço temporal da comunidade fitoplanctônica. In:Vazzoler, A.E.A.M., Agostinho, A.A. and Hahn, N.S. (Eds.) A Planície de Inundação do Alto RioParaná. Aspectos físicos, biológicos e socioeconômicos. Eduem, Uemnupelia, pp. 105 –115.

Train, S. and Rodrigues, L.C. (1998). Temporal fluctuations of the phytoplankton community of the Baía River,in the upper Paraná River floodplain, Mato Grosso do Sul, Brazil. Hydrobiol., 361: 125–134.

Train, S. and Rodrigues, L.C. (2004). Phytoplankton assemblages. In: Thomaz, S.M., Agostinho, A.A. andHahn, N.S. (Eds.), The Upper Parana´ River floodplain: Physical Aspects, Ecology and Conservation.Backhuys, Netherlands, pp. 103-124.

Train, S., Rodrigues, L.C., Bovo, V.M., Borges, P.A.F., Pivato, B.M. (2004). Phytoplankton composition andbiomass in environments of the Upper Paraná River Floodplain. In: Agostinho, A.A., Rodrigues, L.,Gomes, L.C., Thomaz, S.M. and Miranda, L.E. (Eds.), Structure and functioning of the Paraná Riverand its floodplain. EDUEM, Maringá. pp. 63-73.

Page 72: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Trivedy, R.K. and Goel, P. K. (1986). Chemical and biological methods for water pollution studies,Environmental Publications, Karad, 415110, India, pp. 244.

Trivedi, P.R. and Gurdeep, R. (1992). Environmental water and soil analysis. Akashdeep Publish. House, Delhi,India. pp. 141-152.

Tsai, L.J., Yu, K.C. and Ho, S.T. (2003). Correlation of iron/iron oxides and trace metals in sediments of fiverivers in Southern Taiwan. In: Diffuse Pollution conference, Vol. 14, Dublin, pp. 19-25.

Tsai, C. and Ali, Y. (1997). Openwater Fisheries of Bangladesh. The University Press Limited, Dhaka

Tundisi, J.G., Matsumura-Tundisi, T. Arantes, Jr. J.D., Tundisi, J.E., Manzini, N.F. and Ducrot, R. (2004). Theresponse of Carlos Botelho (Lobo-Broa) reservoir to the passage of cold fronts in reflected by physical,chemical and biological variables. Braz. J. Biol., 64 (1): 177-186.

Tundisi, J.G., Ave, D.S., Matsumura-Tundisi, T., Tundisi, J.E.M. and Vannucci, D. (2006). Reservoirs of themetropolitan region of São Paulo: consequences of eutrophications and perspectives for recovery andmanagement. In: Tundisi, J.G., Matsumura-Tundisi, T. and Sedagis Galli, C. (Eds.), Eutrophication inSouth America: causes consequences and technologies for management and control. IIE, AIIEGA,BAS (Eutrosul). pp. 161-182.

Tupyakov, A.V., Laperdina, T.G., Egorov, A.I., Banshchikov, V.A., Mel’nikova, M.V. and Askarova, O.V.(1995). Mercury concentration in the abiogenic environmental components of gold and tungstenmining complexes of the Eastern Transbaikal Region. Water Resources, 2: 179–186.

Türkmen, M. and Ciminli, C. (2011). Seasonal variations of the metal concentrations in the waters of LakeGölbaş in Northern East Mediterranean area of Turkey. Karadeniz Fen Bilimleri Dergisi /The BlackSea J. Sci., 2 (1): 86-93.

Twombly, S. and Lewis, Jr. W.M. (1987). Zooplankton abundance and species composition in laguna laOrsinera, a Venezuelan floodplain lake. Arch. Hydrobiol. (Suppl.), 79 (1): 87-107.

Udo, B.U., Edem, S.O., Udom, G.N. and Ndaeyo, N.U. (2006). Chemical characteristics of wetland soils inAkwa Ibom State. Nigerian J. Agri. Technol., 13: 1-12.

Udo, B.U., Utip, K.E., Inyang, M.T. and Idungafa, M.A. (2009). Fertility assessment of some inland depressionand floodplain (wetland) soils in Akwa Ibom State. J. Trop. Agri. Food Environ. Extn., 8 (1): 14-19.

Udotong, I.R., John, O.U.M. and Udotong, J.I.R. (2008). Microbiological and physicochemical studies ofwetland soils in Eket, Nigeria. World Acad. Sci. Engg. Technol., 44: 837-842.

Udoh, B.T., Ibia, T.O., Udo, B.U. and Edem, S.O. (2008). Assessment of micronutrient status of inlanddepression and floodplain (wetland) soils in Akwa Ibom State, Southeastern Nigeria. J. Trop. Agri.Food, Environ. Extn., 7 (2): 156 – 161.

Udosen, E.D. and Benson, N.U. (2006). Spatio-temporal distribution of heavy metals sediments and surfacewater in Stubbs Creek, Nigeria. Trends Appl. Sci. Res., 1 (3): 292-300.

Ugwumba, A.O. and Ugwumba, A.A. (1993). A study of the physico-chemical hydrology and plankton of AwbaLake in Ibadan, Nigeria. Fish Acad. Commun., 1: 20-39.

Umamaheswari, S. and Anbu saravanan, N. (2009). Water Quality of Cauvery River Basin in Trichirappalli,India, Indian J. Lakes Rivers, 2 (1): 1-20.

Ursinyova, M. and Hladikova, V. (2000). Lead in the Environment of Central Europe. In: Markert, B.A. andFriese, K. (Eds.) Trace Elements: Their Distribution and Effects in the Environment. Amsterdam,Elsevier Science, pp. 109-134.

Page 73: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Uttangi, J.C. (2001). Conservation and management strategy for the water fowls of minor irrigation tank habitatsand their importance as stopover site in the Dharwad district, Trends in wildlife and management. DayaPublishing house, New Delhi, India, pp. 179-221.

Uttah, E.C., Uttah, C., Akpan, P.A., Mikpeme, E., Ogbeche, J., Usip, L. and Asor, J. (2008). Bio-survey ofPlankton as indicators of water quality for recreational activities in Calabar River, Nigeria. J. Appl. Sci.Environ. Manage., 12 (2): 35-42.

Uthe, J.F., Chou, C.L., Loring, D.H., Rantala, R.T., Bewers, J.M., Dalziel, J., Yeast, P.A., and Charron, R.L.(1986). Effect of waste treatment at a Lead smelter on cadmium levels in American Lobster in theadjacent coastal zone. Mar. Poll. Bull., 17 (3): 118-123.

USACE (1987). Wetlands Delineation Manual, Tech. Rept. Y-87-1, (U.S. Army Corp of Engineers),Department of the Army, Washington, D.C.

USDANRCS (1995). Changes in hydric soils of the U.S. Federal Register. U.S. Department of Agriculture-Natural Resources Conservation Service. Volume 60 (37)/ Friday, February 24. pp. 10349. U.S.Government Printing Office. Washington DC.

UN-WATER/WWAP/2006/3. UN World Water Development Report 2006 - Water: A Shared Responsibility,pp. 600. www.unesco.org/water/wwap.

Vadadi-Fülöp, Cs. (2009). Zooplankton (Cladocera, Copepoda) dynamics in the River Danube upstream anddownstream of Budapest, Hungary. Opusc. Zool. Budapest, 40 (2): 87–98.

Valavanidis, A. and Vlachogianni, T. (2010). Metal Pollution in Ecosystems. Ecotoxicology Studies and RiskAssessment in the Marine Environment. Science advances on Environment, Toxicology &Ecotoxicology issues, pp.1-14.

Valecha, V and Bhatnagar, G.P. (1988). Seasonal changes of phytoplankton in relation to some physico-chemical factors in lower lake of Bhopal. Geobios., 15: 170-173

Vareethiah, K. and Haniffa, M.A. (1998). Phytoplankton pollution indicators of coir retting J. Environ. Poll., 3(2): 117-122.

Van den Brink, F.W.B., de Leeuw, J.P.H.. Van der Velde, G. and Verheggen, G.M. (1992). Impact of hydrologyon the chemistry and phytoplankton development in floodplain lakes along the Lower Rhine andMeuse. Biogeochem., 19: 103–128.

Van den Brink F.W.B., Van Katwijk, M.M. and Van der Velde, G. (1993). Growth and morphology of fourfreshwater macrophytes under the impact of the raised salinity level of the Lower Rhine. Aquat. Bot.,45: 285-297.

Van den Brink, F.W., Van Katwijk, M.M. and Van der Velde, G. (1994). Impact of hydrology on phyto andzooplankton community composition in floodplain lakes along the Lower Rhine and Meuse. J.Plankton Res., 16: 351-373.

Van Dijk, G.M. and Van Zanten, B. (1995). Seasonal changes in zooplankton abundance in the lower Rhineduring 1987-1991. Hydrobiol., 304: 29-38.

Van der Lee, G.E.M., Venterink, H.O. and Asselman, N.E.M. (2004). Nutrient retention in floodplains of theRhine distributaries in the Netherlands. River Res. Appl., 20: 315-325.

van der Heide, T., Smolders, A.J.P., Lamers, L.P.M. and van Katwijk, M.M. (2010). Nutrient availabilitycorrelates with bicarbonates accumulation in marine and freshwater sediments- Empirical evidencefrom pore water analyses. Appl. Geochem., 25: 1825-1829.

Page 74: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Varghese, M. and Naik, L.P. (1992). Hydrobiological studies of a domestically polluted tropical pond. Poll.Res., 11 (2): 101-102.

Vâsquez, E. and Rey, J. (1992). Composition, abundance and bîomass of zooplankton in Orinoco floodplainlakes, Venezuela. Annls Limnol., 28 (1): 3-18, doi.org/10.1051/limn/1992004.

Vega, M., Pardo, R., Barrado, E. and Deban, L. (1998). Assessment of seasonal and polluting effects on thequality of river water by exploratory data analysis. Water Res., 32: 3581–3592. DOI: 10.1016/S0043-1354(98)00138-9.

Velho, L.F.M., Lansac-Tôha, F.A. and Bini, L.M. (2003). Influence of environmental heterogeneity on thestructure of testate amoebae (Protozoa, Rhizopoda) assemblages in the plankton of the upper ParanáRiver floodplain, Brasil. Hydrobiol., 88 (2): 154-166.

Velho, L.F.M., Bini, L.M. and Lansac-Tôha, F.A. (2004). Testate amoebae (Rhizopoda) diversity in plankton ofthe upper Paraná river floodplain, Brazil. Hydrobiol., 523: 103-111.

Venkatesharaju, K., Ravikumar. P., Somashekar. R.K., Prakash. K.L. (2010). Physico-chemical andbacteriological investigations on the Cauvery river of Kollegal stretch in Karnataka. Kathmandu Univ.J. Sci. Eng. Technol., 6 (1): 50-59.

Venkateswarulu, V. (1969). An ecological study of the river Moosi, Hyderabad (India) with special reference towater pollution – III. The algal periodicity, Hydrobiol., 34: 533-560.

Venkatasubramani, R. and Meenambal, T. (2007). Study of sub-surface water quality in Mattupalayam Taluk ofCoimbatore district Tamil Nadu. Nat. Environ. Poll. Tech., 6: 307-310.

Verma, M. (1967). Diurnal variation in a fish pond in Sioni, India. Hydrobiol., 43: 453-543.

Verma M.C., Singh, S.M., and Pawan, T. (2001). Ecology of a perennial wetland: A overview of limnobioticstatus. J. Environ. Poll., 8 (1): 53–59.

Vermaat, J.E. (2005). Periphyton dynamics and influencing factors. In: Azim, M.E., Verdegem, M.C.J., VanDam, A.A. and Bederidge M.C.M. (Eds.), Periphyton ecology, exploitation and management.Cambridge: CABI Publishing, pp. 35-49.

Vijaya, A.M.S. (2010). Comparative account of soil physiochemical characteristics of wetland soil and wetlandconverted to rubber plantation- A case study in Nalloor Village, Marthandam, Kanyakumari District,Tamil Nadu. J. Basic Appl. Biol., 4 (3): 213-216.

Viner, A.B. (1985). Thermal stability and phytoplankton distribution. Hydrobiol., 125: 47-69.

Vijverberg, J., Amarasinghe, P.B. Chitapalapong, T. Pagulayan, R.C. Ariyarantne, M.G. Pamanian, E.R.J.Silva, E.I.L. and Nagelkerke, L.A.J. (2008): Structure of microcrustacean zooplankton communities infive tropical Asian water bodies. In: Schiemer, F., Simon, D., Amarasinghe, U.S. and Moreau, J. (Eds.),Aquatic ecosystems and development: comparative Asian perspectives. Biology of Inland WatersSeries. Backhuys Publishers, Leiden, The Netherlands. pp. 153–172.

Vogt, K.A., Vogt, D.J., Brown, S., Tilley, J., Edmonds, R.L., Silver, W.L. and Siccama, T. (1995). Forest floorand soil organic matter contents and factors controlling their accumulation in boreal, temperate andtropical forests. In: J. Lal, K.R., Levine, E. and Stewards, B.A. (Eds.), Soil Management andGreenhouse Effect. CRC Press, Boca Raton, FL, USA. pp. 159-178.

Vollenweider, R.A. (1981). A Manual on Methods for Measuring Primary Production in Aquatic Environments.2nd Edn. IBP Handbook No. 12: 51-97. Blackwell Scient. Publ., Oxford.

Page 75: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Von Uexkull, H.R. (1985). Improvement and maintenance of soil fertility in Tropical Upland farming systems.In: Potassium in the agricultural system of the humid tropics. International Potash Institute. CH-3048.Worblaufen Bern/Switzerland.

Walling, D.E., Quine, T.A. and He, Q. (1992). Investigation of contemporary rates of floodplain sedimentation.In: Carling, P.A. and Petts, G.E. (Eds.), Lowland floodplain rivers: Geomorphological perspectives,John Wiley & Sons, Chichester, pp. 165–184.

Walling, D.E., Owens, P.N. and Leeks, G.J.L. (1997). The characteristics of overbank deposits associated with amajor flood event in the catchment of the River Ouse, Yorkshire, UK. Catena, 31: 53-75.

Walkley, A. and Black, I.A. (1934). Determination of organic carbon in soil. Soil Sci., 37: 29-38.

Walz, N. and Welker, M. (1998). Plankton development in a rapidly flushed lake in the River Spree system(Neuendorfer See, Northeast Germany). J. Plankton Res., 20: 2071 – 1087.

Wani, L.A. (1998). Seasonal dynamics of phytoplankton in a shallow Himalayan Lake, J. Environ. Poll. 5 (2):133-136.

Wantzen, K. M. (2000). Biotic and abiotic interactions in soil and sediment. In: German-Brazilian Workshop onNeotropical Ecosystems – Achievements and Prospects of Cooperative Research Hamburg, September3-8, 2000, Summ. Assess. Sci. Struct. Results, pp. 43-51.

Wantzen, K.M., Machado, F.A., Voss, M., Boriss, H. and Junk, W.J. (2002). Floodpulse induced isotopicchanges in fish of the Pantanal wetland, Brazil. Aquat. Sci., 64: 239–251.

Wantzen, K.M, Rothhaupt, K.-O., Mortl, M., Cantonati, M., Toth, L.G. and Fischer, P. (2008). Ecologicaleffects of water-level fluctuations in lakes: an urgent issue. Hydrobiol., 613: 1–4, DOI 10.1007/s10750-008-9466-1.

Ward, N.I. (1995). Environmental Analytical Chemistry. In: Fifield, F.W. and Haines, P.J. (Eds.), TraceElements. Blackie Academic and Professional, UK, pp. 320-328.

Ward, J.V., Tockner, K. and Schiemer, F. (1999). Biodiversity of floodplain river ecosystems: ecotones andconnectivity. Reg. Rivers: Res. Manag., 15: 125-139.

Ward, J.V., Tockner, K., Arscott, D.B. and Claret C. (2002). Riverine landscape diversity, Freshwater Biol., 47:517-539.

Ward, J.V. and Stanford, J.A. (1995). Ecological connectivity in alluvial river ecosystems and its disruption byflow regulation. Reg. Rivers Res. Manag., 11: 105-119.

Wærvågen, S.B. and Nilssen, J.P. (2003). Major changes in pelagic rotifers during natural and forced recoveryfrom acidification. Hydrobiol., 499: 63-82.

Wærvågen, S.B. and Nilssen, J.P. (2011): Seasonal dynamics and life histories of pelagic cladocerans(Crustacea; Cladocera) in an acid boreal lake. J. Limnol., 70 (1): 83-101, DOI: 10.3274/JL11-70-1-11.

Webber, M., Myers, E.E., Campbell, C. and Webber, D. (2005). Phytoplankton and zooplankton as indicators ofwater quality in Discovery Bay, Jamaica. Hydrobiologia 545: 177-193.

Weir, C.C. (1977). Phosphate fixation by Jamaican latosolic soils. Trop. Agric. (Trinidad), 541 (1): 87 – 93.

Wehr, J.D. and Descy, J.P. (1998). Use of phytoplankton in large river management. J. Phycol., 34 (5): 741-749.

Welcomme R.L. (1979). Fisheries ecology of floodplain rivers. London, Longman. pp. 317.

Page 76: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Welcomme R.L. (1985). River Fisheries. Food and Agriculture Organization Fisheries Technical Paper 262.Rome, FAO. pp. 1-330.

Welcomme R.L. (1990). Status of fisheries in South American Rivers. Interciencia, 15: 337-345

Wetzel, R.G. (1975). Limnology. Washington D.C., USA, pp. 743.

Wetzel, R.G. (1975). Primary production. In: Whitton, B.A. (Ed.) River Ecology. Cambridge, CambridgeUniversity Press, pp. 230- 247.

Wetzel, R.G. (1983). Limnology. 2nd Edn. Saunders Coll. Publ., Philadelphia, pp. 860

Wetzel, R.G., Brammer, E.S. and Forsberg, C. (1984). Photosynthesis of submersed macrophytes in acidifiedlakes. I. Carbon fluxes and recycling of CO2 in Juncus bulbosus L. Aquat. Bot., 19 (3-4): 329-342.

Wetzel, R.G. (2001). Limnology: Lake and River Ecosystems. Academic Press, San Diego. pp.1006.

Wiebezahn, F.H., Alvarez, H. and Lewis, Jr. W.M. (1990). El Río Orinoco como Ecossistema. Editorial Galac,Caracas, pp. 430.

WHO (1985). Guidelines for drinking water quality, 1st Edn. World Health Organization, Geneva.

WHO (1991). Guidelines for drinking water quality. Geneva. (WHO/SDE/WSH 03. 04).

WHO (1992). Our planet our health- report of the WHO commission on health and Environment, Published byWHO, Geneva, pp. 130-131.

WHO (1993) WHO guideline values for contaminants in water: Guidelines for Drinking-Water Quality —Recommendations 2nd Edn. Vol.-1.WHO, Geneva, pp. 208.

WHO (2003). Guidelines for drinking water quality. Geneva. (WHO/SDE/WSH 03. 04).

WHO (2003). Copper in drinking-water. Background document for preparation of WHO Guidelines fordrinking-water quality. Geneva, World Health Organization (WHO/SDE/WSH/03.04/88).

WHO (2003). Iron in drinking-water. Background document for preparation of WHO Guidelines for drinking-water quality. Geneva, World Health Organization (WHO/SDE/WSH/03.04/8).

WHO (2006). Guidelines for Drinking Water Quality,” 2nd Edn. WHO publications, Geneva.

Whalen, J.K., Chang, C., Clayton, G. and Wand, C. (2000). Cattle manure amendment can increase pH of acidsoils. Soil Sci. Soc. Am. J., 64: 962 –966.

Whittaker, R.J., Willis, K.J, and Field, R. (2001). Scale and species richness towards a general, hierarchicaltheory of species diversity. J. Biogeogr., 28: 453-470.

Whiting, G. and Chanton, J. (2001). Greenhouse carbon balance of wetlands: Methane emission versus carbonsequestration. Tellus, Ser. B, 53: 521– 528.

Wilson, J.G., Allott, N., Bailey, F. and Gray, N.F. (1986). A survey of the pollution status of the Liffey Estuary.Irish J. Environ. Sci., 3 (2): 15-20.

Wilson, M., Philp, R., Gillam, A., Gilbert, T. and Tate, K. (1983). Comparison of the structures of humicsubstances from aquatic and terrestrial sources by pyrolysis gas chromatography-mass spectrometry.Geochemica et Cosmochimica Acta, 47: 497-502

Page 77: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Winemiller, K.O. and Jepsen, D.B. (1998). Effects of seasonality and fish movement on tropical river foodwebs, J. Fish Biol., 53: 267–296.

Winemiller K.O. (2004). Floodplain river food web: generalization and implications for fisheries management.In: Welcomme, R. and Petr, T. (Eds.), Proc. 2nd Int. Symp. Manag. Large Rivers Fisher., Vol. II.Regional Office for Asia and the Pacific, Bangkok, Thailand. RAP Publication 2004/16. pp. 285-309.

Winkler, L.W. (1888). Die Bestimmung des in Wasser gelösten Sauerstoffen. Berichte der DeutschenChemischen Gesellschaft, 21: 2843–2855.

Winner, J.M. (1975). Zooplankton. In: Whitton, B.A. (Ed.) River ecology, Univ. Calif. Press, Berkeley. pp. 155-169.

Winner, J.M. (1975). Zooplankton. In B.A. Whitton (Ed.) River ecology, Univ. Calif. Press, Berkeley. pp. 155-169.

Winter, T.C. and Woo, M.K. (1990). Hydrology of lakes and wetlands. In: Wolman, M.G. and Riggs, H.C.(Eds.), Surface Water Hydrology. Geological Society of America, Boulder, Colorado, pp. 159-187.

Winter, T.C. (1999). Relation of streams, lakes, and wetlands to groundwater flow systems. Hydrogeol. J., 7:28-45.

Wissinger, S.A., Whiteman, H.H. and Sparks, G.B. (1999). Foraging tradeoffs along a predator-permanencegradient in subalpine wetlands. Ecology, 80: 2102–2016.

Wojciechowska, W., Pasztaleniec A., Solis, M., Turczyński, M. and Dawidek, J. (2005). Phytoplankton of tworiver lakes in relation to flooding period (River Bug, Eastern Poland). Polish J. Ecol., 53 (3): 419-425.

Wojciechowska, W., A. Pasztaleniec and M. Solis (2007). Diversity and dynamics of phytoplankton infloodplain lakes (Bug River, Eastern Poland). Int. J. Oceanogr. Hydrobiol., XXXVI:199- 208.

Wood, R.B., Prosser, M.V. and Baxter, R.M. (1976). The seasonal pattern of thermal characteristic of fourBishoftu crater lakes, Ethiopia. Freshwater. Biol., 6: 519-530.

Wood, R.B. and Talling, J.F. (1988). Chemical and algal relationships in salinity series of Ethiopian inlandwaters. Hydrobiol., 15: 29– 67.

Wong, M.T.F., Wild, A. and Juo, A.S.R. (1991). Retarded leaching of nitrate measured in monolith lysimetersin south-east Nigeria. J. Soil Sci., 38: 511-518.

Wright, T. (1982). Seasonal variations in water quality of a West African River Senegal. Biol. Jb. Dodonala, 46:192 -201.

WTI, Inc. (1995). Field Guide for Wetland Delineation. 1987 Corps of Engineers Manual. Glenwood, N.M.WTI 02-1.

Wu, J.-T. and Kow, L.-C. (2010). Alteration of phytoplankton assemblages caused by changes in water hardnessin Feitsui Reservoir, Taiwan. Bot. Stud., 51: 521-529.

Yacoub, A. (2007). Study on some heavy metals accumulated in some organs of three River Nile fishes fromCairo and Kalubia Governorates. African J. Biol. Sci., 3: 9-21.

Yadava, Y.S., Singh, R.K. Choudhury, M. and Kolekar, V. (1987). Limnology and productivity in Dighali beel(Assam). Trop. Ecol., 28: 137- 146.

Page 78: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Yadav, Y.S. and Dey. S.C. (1990). Impact of physico-chemical complexes on plankton density in Dhir Beel ofAssam. Limnologica, 21: 287-292.

Yahya, A. (1994). Heavy metal concentration in floodplain soils in Le An River area. China Environ. Sci., 5(20): 135-139.

Yakub, A.B. (2004). Assessment of water quality and plankton of effluent receiving lower Awba stream andreservoir, Ibadan. African J. Appl. Zool. Environ. Biol., 6: 107-110.

Yamamuro, M., Kioke, I. and Iizuumi, H. (1993). Partitioning of nitrogen stocks in the vicinity of a Fijianseagrass bed dominated by Syingodiun isoettifolum (Ascherson) Dandy. Aust. J. Mar. FreshwaterResour., 44: 101-115.

Yang, H. and Rose, N.L. (2005). Trace element pollution records in some UK lake sediments, their history,influence factors and regional differences. Environ. Intl., 31: 63-75.

Yan, N.D., Keller, W., Somers, K.M., Pawson, T.W. and Girard, R.E. (1996). Recovery of crustaceanzooplankton communities from acid and metal contamination: comparing manipulated and referencelakes. Canadian J. Fisher. Aquat. Sci., 53: 1301-1327.

Yildiz, S., Altindağ, A. and Ergönül, M.B. (2007). Seasonal fluctuations in the zooplankton composition of aeutrophic lake: Lake Marmara (Manisa, Turkey). Turk. J. Zool., 31: 121-126.

Yu, P., Wang, Y. and Kuo, C. (2003). Effect of land-use change on runoff response in the ungauged Ta-Choubasin, Taiwan; In: Erosion Prediction in Ungauged Basins: Integrating Methods and Techniques. IAHSPublication, 279: 162–170.

Yurukova, L. and Kochev, K. (1994). Heavy metal concentrations in freshwater macrophytes from theAldomirovsko swamp in the Sofia District, Bulgaria. Bull. Environ. Contm. Toxicol., 52 (4): 627–632.

Zafar, A.R. (1986). Seasonality of phytoplankton in some South Indian lakes. Hydrobiol., 138 (1): 177–187.

Zafaralla, M.T. (1992). Limnological Assessment of Taal Lake. pp. 281.

Zagon, S. and Enache, I. (2009). Pollution degree of Tabacarie Lake in 2009, Proc. 3rd Intern. Conf. Environ.Geol. Sci. Eng., pp. 132-136

Zalocar de Domitrovic, Y. (2003). Effect of fluctuations in water level on phytoplankton development in threelakes of Paraná River floodplain (Argentina). Hydrobiol., 510: 175-193.

Zaret, T.M., Devola, H. and Santos, A.D. (1981). Nutrient addition experiments in Lago Jacaretinga, CentralAmazon Basin, Brasil. Verb. Internat. Verein. Limnol., 21: 721 – 724.

Zende, N.A. (1987). Soils of Nagaland and relation to physiography, their characteristics and classification. J.Indian Soc. Soil Sci., 35: 706-711.

Zhao, W., Fu, B., Chen, L., Zhang, Q. and Zhang, Y. (2004). Effects of land-use pattern change on rainfall-runoff and runoff sediment relations: A case study in Zichang watershed of the Loess Plateau of China.J. Environ. Sci., 16 (3): 436–442.

Zhong-wu, L.I., Huang J.-Q., Li, Y.-Y., Guo, W., Zhu, J.-F., (2011). Assessment on soil fertility of DongtingLake wetland area (China) based on GIS and fuzzy evaluation. J. Cent. South Univ. Technol., 18:1465−1472, DOI: 10.1007/s11771−011−0862−8.

Zohary, T., Pais-Madeira, A.M., Robarts, R. and Hambright, K.D. (1996). Interannual phytoplankton dynamicsof a hypertrophic African lake. Arch. Hydrobiol., 136: 105–126.

Page 79: References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/16182/14/15...Stream Ecology: Structure and function of running waters. Kluwer Academic Publishers. Dordrecht, Netherlands

Zohary, T., Fishbein, T., Kaplan, B. and Pollingher, U. (1998). Phytoplankton-metaphyton seasonal dynamics ina newly-created subtropical wetland lake. Wetlands Ecol. Manag., 6:133–142.

Zweig, R.D. (1989). Evolving water quality in a common carp & blue tilapia high production pond. Hydrobiol.,171 (1): 11-21.