Exploring Ecosystems & Biomes
Exploring Ecosystems & Biomes
Learning Objectives
At the end of the lesson you will be able to define ecosystems, identify key global biomes, describe food chains and nutrient cycles, and explain why ecosystems are important.
What is an Ecosystem?
An ecosystem is a natural environment and includes the flora (plants) and fauna (animals) that live and interact within that environment. Flora, fauna and bacteria are the biotic or living components of the ecosystem. Ecosystems are dependent on the following abiotic or non-living components:
climate - the temperature and amount of rainfall are very important for determining what species can survive in the ecosystem
soil - the soil type is important as this provides nutrients that will support different plants
water - the amount of water available in an ecosystem will determine what plants and animals can be supported
The biotic parts of the ecosystem, which include bacteria, flora and fauna, have a complex relationship with the abiotic components - changing one will lead to a change in the other.
Changes to ecosystems
Ecosystems are very sensitive to change. The living and non-living components of the ecosystem can be altered by either natural factors or human management.
Changes to the ecosystem caused by natural factors include:
drought
flood
fire
disease
Changes to the ecosystem caused by human management include:
introducing more fish (fish stocking)
altering the drainage of the land which may influence the amount of water
changing the pH level of the water
altering the nutrient levels of the water if fertilisers are leached into the water resulting in eutrophication
Any of these changes can have a negative impact on the ecosystem and could result in the collapse of a food chain.
Ecosystem Examples
Examples include forests, ponds, and grasslands—each with unique living things and conditions.
Key Parts of Ecosystems
Ecosystems have biotic (living) parts like plants and animals, and abiotic (non-living) parts like sunlight, water, and soil.
🌿 Biotic (Living) Components
These are all the living organisms in an ecosystem. They depend on each other for food, shelter, and survival.
Main groups:
Producers – Plants and algae that make their own food using sunlight (photosynthesis)
Consumers – Animals that eat plants or other animals
Decomposers – Fungi and bacteria that break down dead matter and return nutrients to the soil
Examples
Trees, grasses, flowers
Fish, birds, insects, mammals
Mushrooms, microbes in soil and water
Role in the ecosystem
Biotic components create food chains and food webs, transfer energy, and recycle nutrients through feeding and decomposition.
☀️ Abiotic (Non-Living) Components
These are the physical and chemical factors that shape the environment and determine what can live there.
Key factors:
Sunlight (main energy source)
Water (rivers, rain, humidity)
Air (oxygen, carbon dioxide)
Soil and minerals
Temperature, rainfall, wind, and climate
Role in the ecosystem
Abiotic factors control where organisms can live, how they grow, and how the ecosystem functions.
How They Work Together
Plants use sunlight, water, air, and soil to grow.
Animals eat plants or other animals for energy.
Decomposers break down waste and dead organisms, returning nutrients to the soil.
Those nutrients help plants grow again.
In short:
Abiotic parts provide the conditions and resources.
Biotic parts use those resources to create a living, connected system.
What is a Biome?
A biome is a very large geographical region defined by its climate (temperature and rainfall) and the typical plants and animals that live there.
Key idea: Biomes are bigger than ecosystems.
A biome contains many ecosystems that share similar climate and living conditions.
How climate shapes a biome
Temperature and rainfall decide what plants can grow.
Plants determine what animals can survive there.
This creates a recognisable pattern of life across a huge area.
Major Global Biomes
Global biomes include tropical rainforests, deserts, tundra, grasslands, temperate forests, and savannas. These are vast regions of the Earth that are defined mainly by their climate, especially patterns of temperature and rainfall. The climate in each biome determines the type of vegetation that can grow there, and this in turn affects the animals that can survive. For example, hot and wet conditions in tropical rainforests support dense tree growth and very high biodiversity, while extremely dry deserts can only support drought-resistant plants and specially adapted animals. In cold tundra regions, low temperatures and frozen ground limit plant growth to mosses and grasses, whereas grasslands and savannas are dominated by grasses due to seasonal rainfall and grazing animals. Temperate forests, with moderate rainfall and seasonal changes, support deciduous trees and a wide variety of wildlife. Although these biomes occur in different parts of the world, each one shows a clear relationship between climate, plants, and animals across a very large area.
Tropical Rainforest
Key traits
Hot and wet all year; very high rainfall
Layered structure: canopy, understory, forest floor
Thin soils; nutrients recycled rapidly
Living things
Tall evergreen trees, vines, epiphytes
Monkeys, parrots, insects, frogs, big cats, microbes
Cool interactions
Intense competition for light → tall trees and climbing plants
Fast decomposition → nutrients quickly reused by plants
Desert Biome
Key traits
Very low rainfall; extreme temperatures
Sandy or rocky soils with little organic matter
Water is the main limiting factor
Living things
Cacti, shrubs, drought-resistant plants
Lizards, snakes, camels, insects, small mammals
Cool interactions
Plants store water; animals are often nocturnal to avoid heat
Food chains are short due to low plant growth
Tundra Biome
Key traits
Very cold; little rainfall
Permafrost (permanently frozen ground)
Very short growing season
Living things
Mosses, lichens, grasses, small shrubs
Arctic foxes, reindeer, birds, insects
Cool interactions
Plants grow low to resist wind and cold
Migratory animals arrive in summer to breed
Grassland Ecosystem (Temperate)
Key traits
Moderate rainfall; not enough for many trees
Frequent fires and grazing
Deep, fertile soils
Living things
Grasses, wildflowers
Grazers, burrowing animals, insects, predators
Cool interactions
Fire and grazing prevent tree growth
Deep roots hold soil and store nutrients
🌿 Savanna Ecosystem (Tropical Grassland)
Key traits
Hot with distinct wet and dry seasons
Grasses with scattered trees (e.g., acacia)
Seasonal drought and fires
Living things
Grasses, acacia trees
Elephants, zebras, lions, insects, birds
Cool interactions
Large herbivores shape vegetation by grazing
Fires and drought control tree density
🍂 Temperate Forest Ecosystem
Key traits
Moderate rainfall; four seasons
Deciduous trees that lose leaves in autumn
Rich soils from leaf litter
Living things
Oak, beech, maple trees; shrubs; fungi
Deer, birds, foxes, insects, microbes
Cool interactions
Leaf fall → decomposition → nutrient-rich soil
Seasonal changes affect animal behaviour and plant growth
Food Chains Explained
A food chain shows how energy flows from one organism to another. It starts with a producer (a plant or algae that makes food using sunlight) and passes through a series of consumers up to a top predator.
The order in a food chain
Producer – makes its own food (photosynthesis)
Primary consumer – eats the producer (herbivore)
Secondary consumer – eats the herbivore (carnivore/omnivore)
Tertiary consumer / top predator – eats other consumers
Example Food Chain
Grass → Rabbit → Fox → Hawk
Grass (producer) captures energy from the Sun
Rabbit gets energy by eating grass
Fox gets energy by eating the rabbit
Hawk, as top predator, gets energy by eating the fox
Key GCSE points
Arrows show the direction of energy transfer (who is eaten by whom)
Energy decreases at each step because some is lost as heat and movement
Most food chains have 3–5 organisms before the energy runs too low
What is a Nutrient Cycle?
A nutrient cycle is a natural process that recycles essential elements (such as carbon and nitrogen) through living organisms and the non-living environment in an ecosystem.
Instead of being used once, these nutrients move in a loop between:
Plants
Animals
Decomposers (fungi and bacteria)
Soil, water, and air
What is a Nutrient Cycle?
How the cycle works (general pattern)
Plants take nutrients from the soil/air to grow.
Animals get those nutrients by eating plants (or other animals).
When organisms excrete waste or die, decomposers break them down.
Nutrients are returned to the soil or air.
Plants reuse them — and the cycle continues.
Two key examples you should know
Carbon cycle – carbon moves through photosynthesis, feeding, respiration, and decomposition.
Nitrogen cycle – nitrogen is fixed from the air into the soil, used by plants, passed to animals, and returned by decomposers.
Why nutrient cycles matter
Prevent nutrients from running out
Keep soil fertile for plant growth
Support food chains and whole ecosystems
Nutrient Cycles in Action
The water, carbon, and nitrogen cycles move essential materials for life between the air, land, water, and living organisms. These cycles constantly recycle resources so they can be used again and again in ecosystems.
Nutrient Cycles in Action
💧 Water cycle — Water cycle
Evaporation from seas, lakes, and rivers
Condensation forms clouds
Precipitation falls as rain/snow
Collection in rivers, soil, and oceans
Plants return water to the air by transpiration
Why it matters: supplies fresh water for plants, animals, and habitats.
🌿 Carbon cycle
Plants remove carbon dioxide by photosynthesis
Carbon passes through food chains by feeding
Respiration and decomposition return CO₂ to the air
Combustion (burning fuels) also releases CO₂
Why it matters: carbon is the building block of all living cells.
🌱 Nitrogen cycle
Nitrogen gas is fixed into the soil by bacteria or lightning
Plants absorb nitrates to make proteins
Animals get nitrogen by feeding
Decomposers return nitrogen to the soil
Denitrification returns nitrogen to the air
Why it matters: nitrogen is needed to make proteins for growth and repair.
Why Are Ecosystems Important?
Ecosystems are vital because they provide the basic resources that all living things need to survive. They supply food, medicine, clean air, and clean water, and they create the conditions that make life on Earth possible for humans, animals, and plants.
Key benefits (ecosystem services)
Food
Crops, fish, fruits, and livestock all depend on healthy soils, pollination, and water.
Medicine
Many medicines come from plants and microorganisms found in forests, oceans, and soils.
Clean air
Plants remove carbon dioxide and release oxygen through photosynthesis.
Clean water
Forests, soils, and wetlands filter and store water, reducing pollution and floods.
Pollination
Insects like bees pollinate crops and wild plants.
Climate control
Forests and oceans store carbon and help regulate global temperatures.
Human Impact on Ecosystems
Human activities can seriously damage ecosystems. Deforestation, pollution, and climate change alter habitats, reduce biodiversity, and disrupt the balance between living organisms and their environment. Protecting ecosystems is vital to secure resources and stability for the future.
Major human impacts
Deforestation
Cutting down forests for farming, fuel, or building removes habitats and reduces carbon storage.
Pollution
Plastics, chemicals, and waste contaminate water, soil, and air, harming plants and animals.
Climate change
Rising temperatures, droughts, floods, and wildfires shift or destroy habitats.
Overexploitation
Overfishing, hunting, and resource extraction reduce populations faster than they can recover.
Why protection matters
Damaged ecosystems provide fewer ecosystem services like clean water, fertile soil, food, and climate regulation. Conservation, sustainable resource use, reforestation, and reducing pollution all help ecosystems recover and continue supporting life on Earth.
Quick Quiz: Multiple-choice
Which of these is NOT an example of a biome?
a) Desert
b) Lake
c) Tundra
Answer
b) Lake
A lake is an ecosystem (a specific habitat), not a large climate-defined region.
Desert and tundra are biomes because they are vast areas defined by climate, with characteristic plants and animals.
Short Definitions Practice
Define the following in your own words:
ecosystem
producer
consumer
nutrient cycle
Biome
Foods cycle
Reflection
Why is it important for humans to understand and protect ecosystems and biomes?