beechdrops (epifagus virginiana) are leafless plants that lack chlorophyll. beechdrops get their...

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Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces the amount of nutrients available to the trees themselves. This interaction is best described as — A. predatory B. parasitic C. commensalistic D. mutualistic CPS CPS

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Page 1: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Beechdrops (Epifagus virginiana) are leaflessplants that lack chlorophyll. Beechdrops gettheir nourishment from the roots of beech trees, which reduces the amount of nutrients available to the trees themselves. This interaction is best described as —

A. predatoryB. parasiticC. commensalisticD. mutualistic

CPSCPS

Page 2: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

According to this food web, which of these is an omnivore?

A. Caterpillar

B. Mouse

C. Ant

D. Fly larva

CPSCPS

Page 3: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Which molecule provides most of the energy used to drive chemical reactions in cells?

A. DNA

B. RNA

C. ATP

D.ADP

CPSCPS

Page 4: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

PHOTOSYNTHESIS

Light To create

Purpose: Plants use light to create sugars

Page 5: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces
Page 6: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

What is photosynthesis?

The process in which plants convert light energy into chemical energy

(food glucose).

Happens in the chloroplast

Page 7: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Photosynthesis Equation

PHOTOSYNTHESIS EQUATION:

It will be on every quiz and your unit test!Carbon dioxide + water + E → glucose + oxygen

6CO2 + 6H2O + E → C6H12O6 + 6O2

(reactants) (products)

Light

Enzymes

light

enzymestakes in produces

Page 8: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

ChloroplastChloroplast

ThylakiodThylakiod: sac like membranes

StromaStroma: space between thylakiodsGranaGrana: stack

of thylakiods

Page 9: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Within the chloroplast pictured above are disc like structures arranged in stacks called grana. The stack like membranes contains pigments that absorb light energy. The individual disc-like shaped structures labeled A are called ____.A. chlorophyll

B. thylakoids

C. stroma

D. Golgi apparatus

A

B

CPSCPS

Page 10: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Which word summary word equation best describes a process that directly requires light energy?

A. water + carbon dioxide glucose + oxygen

B. glucose + glucose maltose + water

C. glucose alcohol + carbon dioxide + ATP

D. water + glucose oxygen + carbon dioxide ATP

CPSCPS

Page 11: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Vein

Page 12: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Water enters the plant through the

roots and travels up to the leaf through

the veins.

Water then travels to each cell through a process known as OSMOSIS.

Page 13: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Stomata

Stomata are the little “holes” on a plant leaf that regulates the gas exchange in plants.

Page 14: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Carbon dioxide then travels to each cell through a process known as Diffusion.

Carbon dioxide enters the leaf

through the stomata.

Page 15: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Which structure regulates gas exchange during the processes of photosynthesis and respiration?

A. QB. RC. SD. T

CPSCPS

Page 16: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Products and Reactants in Photosynthesis

Reactants- Carbon Dioxide and Water

Products- Glucose and Oxygen

There is NO ATP gain during photosynthesis! *****Remember the ATP Cycle*****

Page 17: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Light and Pigments

Photosynthesis depends on pigments -proteins that absorb some light and reflect others.Examples: chlorophyll and

carotene

Page 18: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Light and Pigments

Chlorophyll absorbs blue, violet, and red light, but reflects green light. This is why plants are green.

Carotene reflects orange light.

Page 19: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Section 8-3

Figure 8-7 Photosynthesis: An OverviewPhotosynthesis overview:

(PRODUCTS)

LIGHT

O2Sugars(glucose)

CO2

Light-Dependent Reactions

CalvinCycle

H2O

(REACTANTS)

Page 20: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

The 2 Steps to Photosynthesis

1. Light-dependent reactions

2. Calvin Cycle (AKA: Light-independent reactions)

Page 21: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Step 1:Light-Dependent Reactions *requires light*

PurposePurpose: To make oxygen used by other organisms

Location:Location: Thylakoid membranes

Page 22: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Step 1: LDR

Reactants Products

6H2O

Light Energy

6O2

Page 23: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Step 1: LDR

How it works:How it works:

H2O is broken up by light into H+ and O2.

O2 is released through stomata

Page 24: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Step 2: The Calvin Cycle (Light-Independent Reactions)

* does not need light*

Purpose:Purpose: To make glucose from CO2

Location:Location: STROMA

Page 25: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Step 2: Calvin cycle

Reactants Products

6CO2 Glucose

Page 26: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Calvin CycleHow it works:How it works:

6 CO2 enter the cycle and are converted into glucose.

With TWO turns of Calvin Cycle, you make ONE glucose.

Page 27: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

What are the two steps of Photosynthesis listed in the correct order?

A. Glycolysis & Krebs cycle B. Calvin cycle & L.D.R. C. L.D.R. & Kreb’s cycle D. L.D.R & Calvin cycle

CPSCPS

Page 28: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Which compound is a Which compound is a product of photosynthesis product of photosynthesis and a reactant for cellular and a reactant for cellular respiration?respiration?

A. carbon dioxide

B. water

C. glucose

D. energy

CPSCPS

Page 29: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

Why are photosynthesis and cellular respiration often considered opposites?A. Photosynthesis produces twice as many

ATP molecules as cellular respiration does.

B. Water is released during photosynthesis and consumed during cellular respiration.

C. Photosynthesis occurs during the day, and cellular respiration occurs at night.

D. Oxygen is produced during photosynthesis and used during cellular respiration

CPSCPS

Page 30: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

BIG PICTURE

Plants release oxygen Animals bring in oxygen

Plants create glucose Animals eat glucose

Animals breathe out water Plants bring in water

Page 31: Beechdrops (Epifagus virginiana) are leafless plants that lack chlorophyll. Beechdrops get their nourishment from the roots of beech trees, which reduces

BIG PICTURE Plants and animals work together to create the carbon cycle:

OxygenOxygen

GlucoseGlucose

Carbon Carbon DioxideDioxide

waterwater