IB ESS SL & HL 3.1 Biodiversity & Evolution Paper 1 & 2 ~12 min read

How Evolution Generates Diversity

Every example of natural selection you will ever be asked about follows the same five steps in the same order. Learn the sequence once and you can answer a question about moths, rabbits, bacteria or anything else the examiner invents.

📘 What you need to know

Evolution and natural selection

Biodiversity arises from evolutionary processes.

Definitions Evolution — the cumulative change, the overall change over time, in the heritable characteristics of a population or species.
Natural selection — the mechanism that drives evolutionary change.

Natural selection occurs continuously and can take place over billions of years. The result of that process is the biodiversity of life on Earth we see today.

The five steps

In any environment, the individuals with the best adaptive features are the ones most likely to survive and reproduce.

Natural selection: the same five steps every time Every example in the syllabus follows this sequence 1 VARIATION individuals differ because of differences in genes, ultimately from chance mutations 2 OVERPRODUCTION more offspring are produced than the environment can support 3 COMPETITION competition for food and resources creates a struggle for survival 4 DIFFERENTIAL SURVIVAL the best-suited individuals are more likely to survive and reproduce 5 INHERITED CHANGE their genes pass on at a higher rate, so the next generation carries more of the trait Repeat over generations and the advantageous trait becomes the norm
Steps 3 and 4 are where the selection pressure acts. Steps 1 and 5 are what make the change heritable rather than temporary.
  1. Individuals in a species show a range of variation caused by differences in genes.
  2. When organisms reproduce, they produce more offspring than the environment can support.
  3. This leads to competition for food and other resources — a “struggle for survival”.
  4. Individuals with characteristics most suited to the environment have a higher chance of survival and more chances to reproduce.
  5. The genes for those characteristics are passed on at a higher rate, so the next generation contains more individuals with the better-adapted variation.

This theory was put forward by Charles Darwin and became known as “survival of the fittest”.

A worked example: rabbit fur colour

Imagine a population of rabbits showing variation in fur colour, preyed on by foxes. The foxes act as a selection pressure.

A selection pressure shifts the population Foxes hunt by sight, so camouflage decides who reproduces 0 50 100 frequency (%) generation 1 generation 2 generation 3 generation 4 white fur: poorly camouflaged brown fur: selection advantage The gene frequency changes; no individual rabbit changes colour
The illustrative figures show the shape of the change. The point is the direction, not the exact percentages.

⚠ Three things this example does not mean

The peppered moth is another standard example of natural selection, following exactly the same sequence.

Speciation

Speciation is the generation of new species through evolution. It occurs when populations of a species become isolated and adapt to their environments in different ways. Over time those populations become so different that they can no longer interbreed to produce fertile offspring — at which point they are considered separate species.

There are far more examples of natural selection than anyone could memorise, and you do not need to. Every one follows the same logic: within a species there is always variation from chance mutations; some individuals develop a characteristic giving them a survival advantage, so they live longer, breed more, and pass their genes on more often; repeated over generations, that characteristic becomes the norm. Learn the sequence, then slot in whatever organism the question gives you.

Worked examples

WE 1

Explaining natural selection

Explain how natural selection leads to a change in a population over time. (4 marks)

Step 1: variation Individuals in a species show a range of variation caused by differences in genes, arising from chance mutations. Step 2: competition More offspring are produced than the environment can support, leading to competition for food and other resources. Step 3: differential survival Individuals with characteristics best suited to the environment have a higher chance of surviving to reproductive age and more chances to reproduce. Step 4: inheritance Their genes are passed on at a higher rate, so the next generation contains a greater number of individuals with the better-adapted characteristic. Repeated over generations, it becomes the norm. Variation, competition, differential survival, inheritance say “more likely to survive”, never “will survive”
WE 2

Applying it to an example

A population of rabbits contains both brown and white individuals and is hunted by foxes. Explain how the population will change. (4 marks)

Step 1: the variation and the pressure The rabbits vary in fur colour because of genetic differences. Predation by foxes acts as a selection pressure. Step 2: the disadvantage White rabbits camouflage less well, so predators are more likely to see them when hunting. Step 3: the advantage Brown rabbits therefore have a selection advantage: they are more likely to survive to reproductive age and pass their genes to offspring. Step 4: the change Over many generations the frequency of the gene for brown fur increases while the frequency of the gene for white fur decreases. Gene frequencies shift; individual rabbits do not change talk about gene frequency, not about rabbits “adapting” during their lives
WE 3

Speciation

Outline how speciation occurs. (3 marks)

Step 1: isolation Populations of a species become isolated from one another so that they no longer interbreed. Step 2: divergence Each population adapts to its own environment in different ways through natural selection, and accumulates different genetic changes. Step 3: the threshold Over time the populations become so different that they can no longer interbreed to produce fertile offspring, at which point they are considered separate species. Isolation, divergence, then loss of the ability to interbreed “fertile offspring” is essential — offspring alone is not enough

💡 Exam tips

⚠ Common mistakes

Up next: Measuring Biodiversity. You can describe biodiversity and explain where it comes from. Now you need to put a number on it — and there is a calculation you will be asked to perform.

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