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B-3.1: SUMMARIZE PHOTOSYNTHESIS & INTERPRET THE FORMULA PHOTOSYNTHESIS 1

PHOTOSYNTHESIS 1. Essential Question: What is the role of ATP in cellular activity? SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

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Page 1: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

B-3.1: SUMMARIZE PHOTOSYNTHESIS & INTERPRET THE FORMULA

PHOTOSYNTHESIS 1

Page 2: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

CHAPTER 8 SECTION 1

Essential Question: What is the role of ATP in cellular

activity?

SC B- 3.3:recognize the overall structure of ATP, namely, adenine, the sugar ribose, & three phosphate groups – and summarize its function(including ATP-ADP cycle

Page 3: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

PHOTOSYNTHESIS

Page 4: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

AUTOTROPHS HETEROTROPHS

Organisms that can make their own food (energy source) plants some bacteria algae

Organisms that cannot make their own food; they have to consume food (energy source) Animals

have to eat other organisms

Fungi decomposers

Page 6: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

DRAW & LABEL FIGURE 8-3 ON PAGE 203 ONTO TOP ½ 0F PAGE 53 OF NOTEBOOK

ATPAdenosine

Triphosphate is the

principle chemical

compound cells use to store and release energy

Page 7: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

ATP ADP + P releasing energy in the 3rd phosphate bond. This is a reversible reaction:

ADP + P ATP

Page 8: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,
Page 9: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

PHOTOSYNTHESIS OVERVIEWCHAPTER 8-2

EQ: How would you describe the relationship between chlorophyll and the color of plants?

Page 10: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

Photosynthesis uses the energy in sunlight and carbon dioxide from the air to make glucose and releases oxygen into the air.

Page 11: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

Draw, color, label , and write caption for figure 8-4 from page 206 on page 65 of your notebook

Page 12: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

Pigments are also a necessary part of photosynthesis.Pigment: any light absorbing moleculeChlorophyll: principle pigment of plants; absorbs light energy

Page 13: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

PHOTOSYNTHESIS REACTIONSCHAPTER 8-3

EQ: What happens in the light reactions of photosynthesis?

Page 14: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

Inside a Chloroplast:

thylakoids: saclike membrane folds; appear like coinsgranum: stack of thylakoidsstroma: space between granum and inner membrane

Page 15: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

PHOTOSYSTEMS• clusters of pigments in thylakoid membrane that capture energy from light•Photosystem I & II

Page 16: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

NOTICE THIS IS HAPPENING IN THE THYLAKOID MEMBRANE

LIGHT REACTIONS Use energy from light to

excite electrons. Electrons absorb energy from light and go from their ground state to their excited state. These excited electrons then jump out of that atom & move through a series of molecules called the electron transport chain

Page 17: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT REACTIONS: STEP 1

Photosynthesis begins when photons of light are absorbed by pigments in Photosystem II

Ground state electron excited electrons enter electron transport chain

The electrons that left must be replaced: Enzymes breakdown 2 water 4H+ + O2 + 4 electrons

Page 18: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT REACTIONS: STEP 2

The excited electrons move thru the electron transport chain to

Photosystem I Their energy is used to move H+ from

the stroma to inner thylakoid space

Page 19: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

Light Reactions: Step 3( in Photosystem I now)

One of the electron carrier molecules is NADP+

NADP+ carries 2 excited electrons with a H+

In the process NADP+ NADPH thus converting some of the light energy into chemical energy

NADPH carries excited electrons to other molecules

Page 20: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT REACTIONS: STEP 4

Over time the inside of the thylakoid membrane fills with H+ making the outside of the membrane relatively negative compared to the inside (creating a difference in charge across the membrane)

The difference in charges provides energy to make ATP

Page 21: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT REACTIONS: STEP 5

The thylakoid membrane is impermeable to H+

Membrane protein called ATP synthase allows H+ to pass through membrane

As H+ is passing through ATP synthase changes shape & in the process binds ADP + P ATP

Page 23: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

OVERVIEW OF LIGHT REACTIONS

Things required Light Water NADP+ ADP + P

Things produced Oxygen NADPH ATP

Page 25: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

TIME FOR THOUGHT

How would you compare the role of Photosystem II and Photosystem I

Page 26: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT-INDEPENDENT REACTIONS

aka: Thermochemical cycle

Calvin Cycle

Page 27: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT-INDEPENDENT REACTIONS: PART 1

6 carbon dioxide molecules enter chloroplast from atmosphere

Each combines with a 5-carbon sugar which then splits (12) 3-carbon molecules

Page 28: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT-INDEPENDENTREACTIONS: PART 2

Energy source for Dark reactions is the ATP made in light reactions

H added to carbon molecules is from NADPH made in light reactions

Page 29: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT-INDEPENDENT REACTIONS: PART 3

2 of the (12) 3-carbon molecules leave the cycle & are used by the plant to make compounds needed by the plant for metabolism and growth

Page 30: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT-INDEPENDENT REACTIONS: PART 4

(10) C-C-C + 6 ATP (6) C-C-C-C-C + 6 ADP

The remaining (10) 3-carbon molecules are converted back into 5-carbon sugars in a series of reactions powered by 6 ATP

These are used in the next turn of the cycle

Page 31: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

LIGHT-INDEPENDENT REACTIONS OVERVIEW

Things required: 6 CO2 18 ATP 12 NADPH

Things produced: 1 glucose (6-

carbon) 18 ADP 12 NADP+

Page 32: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

PHOTOSYNTHESIS EQUATION

Page 33: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

FACTORS AFFECTING PHOTOSYNTHESIS

availability of water

1. too much2. too little

temperature1. Photosynthesis

enzymes work best 0 ◦C – 35 ◦C

Page 34: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

FACTORS AFFECTING RATE OF PHOTOSYNTHESIS-2

3. light intensityas it increases rate of photosynthesis increases but only to a certain point, then it levels off

Page 35: PHOTOSYNTHESIS 1.  Essential Question:  What is the role of ATP in cellular activity?  SC B- 3.3:recognize the overall structure of ATP, namely, adenine,

RAINFORESTS

About 2 ½ acres of Amazon rainforest absorbs 1 ton of CO2 per year

20% of world’s O2 produced in Amazon