Plant Structure and Function
1. Characteristics of Plants
Learning outcomes
- I can identify the characteristics that distinguish plants from other organisms.
- I can explain why plants are classified as multicellular organisms.
- I can describe how plants obtain energy through photosynthesis.
- I can explain the role of chlorophyll in plants.
- I can identify the major groups of plants found on Earth.
Introduction
Plants are among the most important living organisms on Earth. They provide food, oxygen, medicine, building materials, and habitats for countless other species. Nearly every ecosystem depends on plants because they capture energy from the Sun and convert it into food through photosynthesis. This stored energy then passes through food chains to support almost all other forms of life.
Scientists classify plants as members of the Plant Kingdom (Kingdom Plantae) because they share a unique set of characteristics. Although plants come in many different shapes and sizes—from tiny mosses to giant redwood trees—they all possess features that distinguish them from animals, fungi, and other organisms.
What Makes a Plant a Plant?
Plants share several important characteristics.
Most plants are:
- Multicellular
- Photosynthetic
- Eukaryotic
- Stationary (do not move from place to place)
- Producers (autotrophs)
- Made of cells with cellulose cell walls
- Contain chloroplasts with chlorophyll
These characteristics distinguish plants from all other kingdoms of life.
Figure 1. Plants share several key characteristics, including multicellular bodies, chloroplasts, and cellulose cell walls.
Plants Are Multicellular Organisms
Plants are multicellular, meaning they are made of many specialised cells.
Different cells perform different functions.
Examples include:
- Root cells absorb water and minerals.
- Leaf cells carry out photosynthesis.
- Xylem cells transport water.
- Phloem cells transport sugars.
Groups of similar cells form tissues, which work together to form organs such as roots, stems, leaves, and flowers.
This organisation allows plants to grow much larger and become more complex than single-celled organisms.
Plants Are Eukaryotes
Plant cells are eukaryotic, meaning they contain:
- A nucleus
- Membrane-bound organelles
- Mitochondria
- Chloroplasts
- Vacuoles
Unlike bacteria, which are prokaryotes, plant cells have a highly organised internal structure.
Plants Make Their Own Food
Plants are autotrophs, also called producers.
They use photosynthesis to convert sunlight into chemical energy stored as glucose.
Photosynthesis requires:
- Sunlight
- Carbon dioxide
- Water
It produces:
- Glucose
- Oxygen
The glucose produced provides energy for growth, reproduction, and all other life processes. Animals and other consumers depend on plants because they cannot produce their own food.
Figure 2. Through photosynthesis, plants convert sunlight into chemical energy while releasing oxygen into the atmosphere.
The Role of Chlorophyll
Plants appear green because they contain chlorophyll.
Chlorophyll is the green pigment found inside chloroplasts.
Its job is to absorb light energy from the Sun.
This energy powers photosynthesis.
Chlorophyll absorbs:
- Red light
- Blue light
It reflects:
- Green light
This reflected green light is why most plants appear green to our eyes.
Without chlorophyll, photosynthesis could not occur.
Figure 3. Chlorophyll inside chloroplasts captures light energy needed for photosynthesis.
Cell Walls and Vacuoles
Plant cells have two important structures that animal cells do not.
Cell Wall
The cell wall surrounds the cell membrane.
It is made mainly of cellulose.
Functions:
- Provides support.
- Maintains cell shape.
- Protects the cell.
- Helps plants remain upright.
Large Central Vacuole
Most plant cells contain a large central vacuole filled with water.
Functions:
- Stores water.
- Stores nutrients.
- Maintains internal pressure.
- Helps support leaves and stems.
When plants lose water, vacuoles shrink and plants begin to wilt.
Major Groups of Plants
Scientists classify plants into several major groups.
Mosses (Bryophytes)
Characteristics:
- Small
- No true roots
- No flowers
- Reproduce using spores
- Live in moist environments
Examples:
- Moss
- Liverwort
Ferns (Pteridophytes)
Characteristics:
- Have roots, stems, and leaves
- Reproduce using spores
- Do not produce flowers or seeds
Examples:
- Bracken fern
- Maidenhair fern
Gymnosperms
Characteristics:
- Produce seeds
- Seeds are not enclosed within fruits
- Usually bear cones
Examples:
- Pine trees
- Spruce trees
- Fir trees
Angiosperms (Flowering Plants)
Characteristics:
- Produce flowers
- Produce fruits
- Seeds are enclosed inside fruits
Examples:
- Roses
- Oak trees
- Sunflowers
- Apple trees
- Grasses
Angiosperms are the largest and most diverse group of plants on Earth.
Figure 4. Plants are divided into major groups based on their reproductive structures and evolutionary history.
Why Plants Are Important
Plants play essential roles in ecosystems.
They:
- Produce oxygen.
- Remove carbon dioxide from the atmosphere.
- Form the base of most food chains.
- Provide habitats for wildlife.
- Prevent soil erosion.
- Help regulate Earth's climate.
- Supply food, medicines, fibres, and building materials.
Without plants, nearly all ecosystems would collapse.
Comparing Plants with Animals
| Plants | Animals |
|---|---|
| Make their own food | Must obtain food by eating |
| Contain chloroplasts. | No chloroplasts |
| Cell walls present | No cell walls |
| Usually stationary | Usually capable of movement |
| Producers | Consumers |
Worked Example
Question
Classify each statement as True or False.
| Statement | Answer |
|---|---|
| Plants are multicellular organisms. | True |
| Plants obtain energy by eating other organisms. | False |
| Chlorophyll is found inside chloroplasts. | True |
| Mosses produce flowers. | False |
| Angiosperms produce seeds enclosed within fruits. | True |
Real-World Connection
Much of the world's food comes directly or indirectly from flowering plants. Crops such as rice, wheat, maize, potatoes, fruits, and vegetables all belong to the angiosperms. Even meat, milk, and eggs depend on plants because farm animals obtain their energy by eating grasses and other plant materials.
Did You Know?
The giant sequoia (Sequoiadendron giganteum) is one of the largest living organisms on Earth, growing to heights of over 90 metres and living for more than 3,000 years. At the other extreme, some flowering plants, such as duckweed, are only a few millimetres across, making plants one of the most diverse groups of organisms on the planet.
Key Terms
Autotroph – An organism that makes its own food using sunlight or chemical energy.
Cell wall – A rigid outer layer surrounding plant cells, made mainly of cellulose.
Cellulose – A strong carbohydrate that forms plant cell walls.
Chlorophyll – The green pigment that absorbs light energy for photosynthesis.
Chloroplast – The organelle where photosynthesis takes place.
Eukaryote – An organism whose cells contain a nucleus and membrane-bound organelles.
Multicellular – Made of many cells.
Photosynthesis – The process by which plants use sunlight to produce glucose from carbon dioxide and water.
Producer – An organism that makes its own food and forms the base of most food chains.
Key Takeaways
- Plants are multicellular, eukaryotic organisms that produce their own food through photosynthesis.
- Chlorophyll inside chloroplasts captures light energy needed for photosynthesis.
- Plant cells have cellulose cell walls and large central vacuoles that provide support and structure.
- The four major groups of plants are mosses, ferns, gymnosperms, and angiosperms.
- Plants are essential because they produce oxygen, remove carbon dioxide, provide food, and support nearly every ecosystem on Earth.