B20: Ecosystems
Communities, ecosystems and interdependence
Communities, ecosystems and interdependence
| Term | Definition |
|---|---|
| Ecosystem | The interaction of a community of living organisms with the non-living parts of their environment |
| Community | All the populations of different species that live together in the same area at the same time |
| Population | All the organisms of the same species living in the same area at the same time |
| Habitat | The place where an organism lives |
| Interdependence | Organisms within a community depend on each other for food, shelter, pollination, seed dispersal, etc. |
In a woodland, there are 500 oak trees, 2000 caterpillars, 50 blue tits and 5 sparrowhawks. Identify the population, community and habitat.
Solution:
Population: all the organisms of one species, e.g. 500 oak trees or 2000 caterpillars.
Community: all the populations living together โ oak trees, caterpillars, blue tits, and sparrowhawks (and all other species in the woodland).
Habitat: the woodland itself โ the place where these organisms live.
Describe and explain the typical predator-prey population cycle.
Solution:
1. When prey population increases, there is more food available for predators.
2. Predator population increases (with a time lag, as predators need time to reproduce).
3. More predators eat more prey, so prey population decreases.
4. With less prey available, predators have less food and their population decreases.
5. With fewer predators, prey population increases again.
This creates a repeating cycle of rise and fall in both populations.
Grass is eaten by rabbits, which are eaten by foxes. Grass is also eaten by caterpillars, which are eaten by blue tits, which are eaten by sparrowhawks. Draw this as a food web and identify the producers, primary consumers and secondary consumers.
Solution:
Producer: grass
Primary consumers: rabbits, caterpillars
Secondary consumers: foxes, blue tits
Tertiary consumer: sparrowhawks
Food web: Grass โ Rabbits โ Foxes; Grass โ Caterpillars โ Blue tits โ Sparrowhawks
A field of grass has a biomass of 10,000 kg. Calculate the approximate biomass of primary consumers and secondary consumers in this food chain.
Solution:
Producer (grass): 10,000 kg
Primary consumers (herbivores): ~10% of 10,000 = 1,000 kg
Secondary consumers (carnivores): ~10% of 1,000 = 100 kg
This shows why pyramids of biomass get narrower at each level and why food chains rarely have more than 4 or 5 trophic levels.
Q1: Define the terms: ecosystem, community, population and habitat.
Q2: Explain the difference between competition and predation, giving an example of each.
Q3: Describe the predator-prey cycle and explain why there is a time lag between changes in the prey population and changes in the predator population.
Q4: Explain why a pyramid of biomass is always pyramid-shaped. Give three reasons why biomass is lost between trophic levels.
Q5: A producer has a biomass of 50,000 kJ/mยฒ. Estimate the biomass available to tertiary consumers and explain why food chains are rarely longer than 4-5 trophic levels.
A 1 m ร 1 m quadrat is placed 15 times in a 200 mยฒ field. The mean number of daisies per quadrat is 6. Estimate the total population.
Population = mean per quadrat ร (total area รท quadrat area) = 6 ร (200 รท 1) = 1,200 daisies
A producer has 50,000 kJ/mยฒ of energy. Calculate the energy at the primary, secondary and tertiary consumer levels assuming 10% transfer efficiency.
Primary consumer: 50,000 ร 0.10 = 5,000 kJ/mยฒ
Secondary consumer: 5,000 ร 0.10 = 500 kJ/mยฒ
Tertiary consumer: 500 ร 0.10 = 50 kJ/mยฒ
1. Wrong: A population is all the organisms in an area Correct: A population is all the organisms of ONE species in an area โ a community includes all the different species
2. Wrong: Arrows in a food chain show who eats whom Correct: Arrows show the direction of energy flow, FROM the eaten TO the eater (e.g. grass โ rabbit, not rabbit โ grass)
3. Wrong: Pyramids of number are always pyramid-shaped Correct: Pyramids of NUMBER can be inverted (e.g. one tree with many insects) โ only pyramids of BIOMASS are always pyramid-shaped
4. Wrong: Decomposers are shown in food chains Correct: Decomposers are NOT shown in food chains but are essential for recycling nutrients back into the soil
6 marks: Explain why pyramids of biomass are always pyramid-shaped and why food chains rarely have more than four or five trophic levels.
Pyramids of biomass are always pyramid-shaped because biomass is lost at each trophic level. Firstly, not all parts of an organism are eaten โ for example, bones, fur, roots and hooves are left behind. Secondly, not all food that is eaten is absorbed; some is egested as faeces. Thirdly, absorbed material is used for respiration, which releases COโ, water and heat energy. Fourthly, some absorbed material is excreted as waste, such as urea in urine. Only approximately 10% of the biomass is transferred from one trophic level to the next. Because so much energy is lost at each stage, there is not enough biomass remaining to support further trophic levels beyond four or five. At the tertiary consumer level, the biomass available may be only 0.1% of the producer biomass, which is insufficient to sustain another level.
Mark scheme: 1 mark for not all parts eaten; 1 mark for egestion; 1 mark for respiration; 1 mark for excretion; 1 mark for ~10% transfer; 1 mark for explanation of why food chains are limited in length
Students investigated the distribution of dandelions in a school field. They used a belt transect from the edge of a shady woodland into the open field, placing 1 mยฒ quadrats every 5 metres. Their results were:
(a) Describe the trend in the data.
(b) Suggest an explanation for the trend.
(c) The students only placed quadrats along one transect line. Evaluate how this affects the reliability of their results.
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