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ECOLOGICAL NICHES The way an organisms “makes a living” is that species niche. Term first used by Grinnell in 1917 in a paper on the Californian thrasher. For Grinnell: niche = habitat requirements. Elton’s niche (1927): an animal’s place in the community (who it competes with, who it eats, and by whom it gets eaten. Hutchinson’s niche (1957): the set of environmental conditions, defined by many variables, in which the species can live.

ECOLOGICAL NICHES

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ECOLOGICAL NICHES. The way an organisms “makes a living” is that species niche.. Term first used by Grinnell in 1917 in a paper on the Californian thrasher. For Grinnell: niche = habitat requirements. - PowerPoint PPT Presentation

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Page 1: ECOLOGICAL NICHES

ECOLOGICAL NICHES

The way an organisms “makes a living”is that species niche.

Term first used by Grinnell in 1917 in a paper on the Californian thrasher. For Grinnell: niche = habitat requirements.

Elton’s niche (1927): an animal’s place in the community (who it competes with, who it eats, and by whom it gets eaten.

Hutchinson’s niche (1957): the set of environmental conditions, defined by many variables, in which the species can live.

Page 2: ECOLOGICAL NICHES

Elton’s niche: a place in the food web:

Page 3: ECOLOGICAL NICHES

Elton’s niche: a place in the food web:

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Hutchinson’s niche: the total set of all physical conditions in which a species can be found.

Extend to “hypervolume” for many factors

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Hutchinson’s niches get smaller when other species are present:

Temperature

Hum

idity

Spc A by itself

A

Temperature

Hum

idity

Spc B by itself

B

Temperature

Hum

idity

Spc A and B together

BA

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ECOLOGICAL NICHES

Fundamental niche: the full range of conditions under which an organism can exist.

Realized niche: the portion of the fundamental niche occupied in the presence of other species.

For all niches: we recognize them only if at least one species takes them.

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WHAT IS SO IMPORTANT ABOUT NICHES?

Because the niche may explain what it takes for a species to exist in a place, niche theory can

potentially answer many fundamental questions:

How can so many species stably coexist?

How does a niche come into being?

Are all niches occupied?

Is there any upper limit to how many niches (thus species) there can be?

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Environmental Temperature

How many times can the total available energy (sunlight) be subdivided to support another species?

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EXAMPLES

Fundamental and realized niches in space and time.

What happens to a vacant niche?

Does high diversity prevent invasion by a new species?

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ChthamalusBalanus

Two species of barnacle

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The two species live in different sections of rock:

Desiccation tolerance limits here

Predation tolerance limits here

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growthrate

Location in intertidal zone

low highmiddle

Balanus larvae settle

Chthamalus larvae settle

The two species fundamental niche is where eachorganism can settle and thrive in the absence of the other:

Here Chthalamus out- competes Balanus

Here Balanus outcompetes Chthalamus

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low highmiddle

Chthamalus alone

Balanus alone

Balanusfundamental

niche

Chthamalus fundamental niche

growthrate

Location in intertidal zonelow highmiddle

Balanusrealized

niche

Chthamalus realized niche

Balanus and Chthamalus together

growthrate

Page 14: ECOLOGICAL NICHES

Coyote (10 – 25 kg)

Red fox (4 – 8 kg)

Food: mice, voles, woodchucks, rabbits, chipmunks, fruits, insects, birds and eggs, carrion, garbage, amphibians, and reptiles.

Food: sheep, poultry, mice, rabbits, ground squirrels, other small rodents, insects, reptiles, fruits and berries.

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Food item size

Relative fooduse

CoyoteRed Fox

insects birds rodents rabbits young livestock

Fundamental Niche

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Food item size

Relative fooduse

CoyoteRed Fox

insects birds rodents rabbits young livestock

Realized Niche

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Ani

mal

s tr

appe

d as

a f

unct

ion

of t

ime

Diverse community of tropical rodents in Mexico

Castro-Arellano & Lacher 2009

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Some ants forage at different times.If ants forage at the same times, often not in the same place.

10:30

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Vacant niches:

Fish gills have many parasites.

Numbers vary from 0 to 30.

Fish populations can have up to 30 species of parasites, but most of the

time they have far fewer.

This indicates a missed ecological opportunity, or empty niches.

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Vacant niches, implications:

If every environment or community has many vacant niches, many more species could share the available resources.

Thus, it should often be possible to introduce new species without losing resident ones.

Humans have either intentionally of unintentionally introduced many species with mixed results.

• naturalization: species gets added to the local species pool, adding to local diversity.

• Invasion: new species take over, replacing many species of the local species pool, diversity declines.

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Some introductions from Europe:

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Some other introductions:

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Invasive species in the habitat of origin are harmless:

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Invasiveness and invasibility:

What makes some species more aggressive in the new habitat?

Noxious invaders often have the following characteristics:

• Sexual & asexual reproduction• Rapid reproduction• High dispersal• Phenotypic plasticity• Tolerance for environmental conditions (generalist)

Lack of natural enemies in the new environmentLack of co-evolution with native competitors

What makes a habitat more invasible than others?

Disturbance of the native communityRecent history of ecosystem (generalist)Low native diversity

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More diverse communities often accommodate more exotic species, however, exotic species may be less invasive in

diverse communities.

From Levine and D’Anotonio 2000

Plant species in Australian heath and shrublands

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In controlled experiments, invasive species are indeed less successful invading high-diversity plots.

Digitaria ischaemum (weedy C4 grass) and Crepis tectorum (weedy composite) in Minnesota grassland plots:

Naeem et al. 2000

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Summary:

1) The niche concept has been around for 100 years and has had many different interpretations and applications.

2) Ultimately, niches do not explain species diversity (because the species makes the niche, not the niche the species), but the concept still makes us ask good scientific questions:

• What does a species need to persist?

• How is a species range/activity affected by the presence of other

species?

• What makes a community vulnerable to invasion?

• What makes a species a “hostile” or “benign” invader?