IB ESS SL 3.1 Biodiversity & Evolution Paper 1 & 2 Core idea ~11 min read

Biodiversity and Ecosystem Resilience

Biodiversity is not one thing you can count. It is variety, measured at three different scales, and each scale protects an ecosystem in a different way. Get the three levels straight now and everything else in this topic falls into place.

📚 What you need to know

The three levels

Definition Biodiversity is the total diversity of living systems, including the variety of habitats, the variety of species, and the genetic variation within each species.
The three levels of biodiversity you can measure diversity at three different scales HABITAT the range of different habitats in an area high: coral reef low: sandy desertSPECIES how many species, and how evenly spread high: rainforest low: wheat fieldGENETIC the range of gene forms in one species high: wild population low: cloned crop BIODIVERSITY = all three togetherBiodiversity is the total variety of life, measured at all three levels. A question can ask about any one of them, so keep the three separate.
The levels are nested. Lose genetic diversity inside a species and you eventually lose the species, and with it a slice of the habitat’s diversity too.

Habitat diversity

Species diversity

Genetic diversity

Genetic diversity is the level students forget, and it is often the one worth the most marks. If every individual is genetically identical, then whatever kills one of them can kill all of them. That is the whole argument in a sentence.

Why diversity gives resilience

Back in 1.2 you met resilience: a system’s ability to absorb a disturbance and stay in the same state instead of tipping into a new one. Biodiversity is one of the two things that supply it, alongside the size of storages.

Why diversity makes an ecosystem tough the more links there are, the more ways there are to cope HIGH DIVERSITY LOW DIVERSITY remove this one and nothing feeds the nextlose one, others fill the gap lose one, the chain breaksMore species and more links mean more ways to absorb a disturbance. That is resilience, and it is why biodiversity loss matters so much.
Count the lines, not the dots. It is the number of alternative routes through the web that keeps the whole thing standing.

🧩 The chain to write in an exam

  1. High biodiversity means many species and many links in the food web.
  2. If a disturbance removes one species, others can take over its role.
  3. So energy and nutrients keep flowing and the ecosystem resists change.
  4. The system stays in its steady-state equilibrium and does not approach a tipping point.
  5. In a low-diversity system there is no alternative route, so one loss can cause collapse.

The monoculture problem

Two kinds of vulnerability. A crop field is vulnerable at the species level, because only one species is there. A field of genetically identical cloned plants is vulnerable at the genetic level as well, because every individual has exactly the same weaknesses. Naming which level is at risk is what turns a general answer into a precise one.

Worked examples

WE 1

Distinguish the three levels of biodiversity

Outline the three levels at which biodiversity can be assessed, giving an example of each. (3 marks)

Level 1: habitat diversity The range of different habitats within an ecosystem or biome — a coral reef has many microhabitats, a sandy desert has very few. Level 2: species diversity The number of species and how evenly individuals are spread between them — high in a rainforest, low in a wheat field. Level 3: genetic diversity The range of gene forms within a species, between and within its populations — high in a wild population, low in a cloned crop. Habitats, species, genes — three scales of the same idea give a named example at each level; unsupported definitions rarely score full marks
WE 2

Link biodiversity to resilience

Explain why an ecosystem with high biodiversity is more resilient than one with low biodiversity. (4 marks)

Point 1: more links High biodiversity means more species and a more complex food web, so there are many alternative feeding routes. Point 2: substitution If a disturbance removes one species, others can take over its role, so energy and nutrient flows continue. Point 3: the outcome The system resists change and returns to its average state, staying away from a tipping point. Point 4: the contrast In a low-diversity system such as a monoculture, one pest or pathogen can remove the dominant species and the ecosystem may collapse. Alternative routes are what stop a loss becoming a collapse use “tipping point” and “steady-state equilibrium” — they link this straight back to 1.2
WE 3

Apply genetic diversity

A farmer plants a single variety of banana, all grown from cuttings of one parent plant. Suggest why this is risky. (3 marks)

Point 1: no genetic variation Plants grown from cuttings are genetically identical, so the crop has almost no genetic diversity. Point 2: the consequence Every individual has the same weaknesses, so a pathogen able to infect one can infect all of them. Point 3: no adaptation There is no variation for selection to act on, so the population cannot adapt to a new pest or a change in conditions. Identical plants means one disease can take the whole crop name the level — this is a genetic diversity question, not a species diversity one

💡 Exam tips

⚠ Common mistakes

Up next: How Evolution Generates Diversity — all of this variety came from somewhere, and the process that built it is still running.

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