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Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single...

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Plants Chapter 2
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Page 1: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Plants

Chapter 2

Page 2: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

A Plant Cell’s Unique Organelles

• Cell Wall• Chloroplasts• Chlorophyll• A single vacuole

Page 3: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

What do plants need to survive?

• Sunlight• Water• Nutrients and

minerals

Page 4: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

How do plants take in materials?

• Take in water through the roots

• Root hairs: threadlike cells that grow from a plant root and takes in water and minerals from the soil

Page 5: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Moving Materials to Different Plant Parts

• There are tubes that carry water, food, and minerals through the plant.

• One tube brings water up.

• One tube brings food and minerals down.

• An elevator!

Page 6: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

TRANSPIRATION

• Transpiration is the evaporation of water through the leaves.

• Stomata: openings in the leaf through which gases and water enter and leave.

• Water leaves the plant through the stomata.

• Gases enter the plant through the stomata.

Page 7: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Transpiration

• http://techalive.mtu.edu/meec/module01/Transpiration.htm

Page 8: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Photosynthesis

• Photosynthesis is the process by which plants make sugar from sunlight, water, and carbon dioxide.

• For this to occur, plants need:1. Sunlight

2. Water

3. Carbon Dioxide

Page 9: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Photosynthesis

Page 10: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Steps of Photosynthesis

1. Chloroplasts trap the light energy (sunlight).

2. Water enters the leaf.

3. Carbon dioxide enters the cell through the stomata.

4. Sugar leaves the leaf and travels to the rest of the plant.

Page 11: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Respiration

• Respiration is the process by which cells change sugar and oxygen into carbon dioxide and water (energy).

• This is how the plant breaks down the food (sugar) into a form it can use!

• Cells use this energy to do their work.

Page 12: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

A Flowering Plant

• Important parts:– Stamen: male part of

the flower that produces pollen

– Pistil: female part of the flower that contains the egg

Page 13: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.
Page 14: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Fertilization vs. Pollination

• Fertilization: takes place when the male gamete from the pollen joins the female gamete in the ovary.

• Pollination: any process that delivers pollen to eggs in plants (this is the first step in fertilization!!)– What are some ways that pollination can

occur?

Page 15: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Life Cycle of Flowering Plant

1. Pollen sticks to pistil. Pollen tube grows into ovule.

2. Sperm fertilizes egg cell.

3. Egg cell becomes a seed.

4. Ovule grows into a fruit that covers seed.

5. Seed grows into a new plant.

Page 17: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Life Cycle of Conifers

• Conifers: plants that make seeds in cones

• Most are trees and shrubs with leaves like needles.

• 2 types of cones:1. Pollen cones

2. Seed cones

Page 18: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Conifer Life Cycle

1. Pollen spreads through air and sticks to seed cone.

2. Sperm fertilizes egg cell.

3. Egg cell grows into a seed.

4. Seed grows into a new plant.

Page 19: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.
Page 20: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Ferns

Page 21: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Life Cycles of Seedless Plants

• Some plants do not make seeds!!

• These plants never have flowers or cones.

• Examples: moss and ferns

• Spores: a tiny cell that can grow into a new plant.

Page 22: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Spore cases

Page 23: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

Life Cycles of Fern

1. Spore cases open.

2. Spore begins growing into young fern plant.

3. Sperm swim to egg cells of young fern plant.

4. Fertilized egg cell grows into new plant part.

5. New plant part grows into fern.

Page 24: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.
Page 25: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

What is a plant adaptation?

• A plant adaptation is – a change in a plant’s structure – occurring over a long period of time– makes the plant able to live in a particular

area

Page 26: Plants Chapter 2. A Plant Cell’s Unique Organelles Cell Wall Chloroplasts Chlorophyll A single vacuole.

How have these plants adapted?


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