IB Biology HL Evolution & Speciation Paper 1 & 2 ~9 min read

Convergent Evolution

A shark and a dolphin have almost the same body shape, but one is a fish and one is a mammal. They did not inherit that shape from a shared ancestor. They arrived at it separately, because the sea sets the same problem for anything that wants to swim fast.

📚 What you need to know

What convergent evolution is

Definition Analogous structures have a similar form and function, but a different evolutionary origin

Here is how you get them. Two species that are only distantly related happen to live in habitats with similar selection pressures. In both habitats, the same sort of characteristic gives a survival advantage. So natural selection acts on each population separately, and pushes both towards the same solution.

That last word matters: separately. The advantageous characteristic is not the result of one mutation in one shared ancestor that both species inherited. Each lineage came up with it on its own, from its own mutations.

Same shape, two completely different reasons the answer is in the tree, not in the animal HOMOLOGOUS one ancestor, different jobs ANALOGOUS different ancestors, same jobhuman arm bat wing shark dolphinshared ancestor fish line mammal linesame bones, different jobs different bones, same shapeHomologous means shared ancestry. Analogous means a shared problem. Sequence data settles it when the outside of an organism is misleading.
Notice the direction of the branches. Homologous structures spread apart from one point; analogous ones travel towards each other from two.

The examples you should know

Dolphins and sharks

Cacti and euphorbias

Two plant families, one desert neither of them copied the other SAME PROBLEM: hot, dry, plants get eaten the same selection pressure in two places CACTUS FAMILY deserts of the Americas EUPHORBIA FAMILY deserts of Africathick stem stores water leaves reduced to spines waxy surface cuts water loss thick stem stores water leaves reduced to spines waxy surface cuts water lossNot close relatives, just shaped by the same conditions. Their flowers and their DNA show the two families are far apart.
Both families solved the same three problems in the same three ways. That is what convergent evolution looks like from the outside.

Butterflies and bats

Both have wings, and both use them to fly. But a bat wing is a modified pentadactyl limb with bones inside it, while a butterfly wing is made of thin membranes and veins and contains no bones at all. Same job, completely different construction — the definition of an analogous structure.

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Which one is which?

Homologous — think “homo” as in “the same family”. Same origin, different jobs.
Analogous — an analogy is when two unrelated things happen to be alike. Same job, different origin.

Homologous or analogous?

FeatureHomologous structuresAnalogous structures
Underlying structureThe same, e.g. the pentadactyl limbDifferent, even when the outside looks alike
FunctionOften very differentSimilar
Evolutionary originA shared common ancestorSeparate ancestors
Produced byDivergence from one ancestor into different environmentsConvergent evolution under similar selection pressures
What it is evidence forShared ancestry between speciesAdvantageous characteristics being passed on by natural selection
Analogous structures are still evidence for evolution — just for a different part of it. They show natural selection repeatedly favouring the same advantageous characteristic. If evolution were random, two unrelated desert plants ending up with the same spines and the same fat stems would be an enormous coincidence.

Why this caused trouble for taxonomy

Before sequence data existed, biologists classified organisms mainly by how they looked. Analogous structures caused real confusion for scientists working in taxonomy, because two species could look like close relatives while being nothing of the sort.

Comparing DNA or amino acid sequences fixes this. A dolphin and a shark may share a shape, but their base sequences are very different, while a dolphin and a cow share far more sequence than either shares with a shark. Appearance can be misleading; sequence data usually is not.

Worked examples

WE 1

Explaining a shared body shape

Sharks and dolphins have similar streamlined body shapes. Explain how this similarity arose. (3 marks)

Point 1: they are not close relatives Sharks are fish and dolphins are mammals, so they belong to different classes and did not inherit the shape from a common ancestor. Point 2: the same pressure Both live in habitats with similar selection pressures, where a streamlined shape gives a survival advantage. Point 3: separate evolution Natural selection acted on each group separately, so the shape evolved twice. This is convergent evolution and the shapes are analogous structures. Same selection pressure, two separate lineages, one shared solution the word “separately” is usually worth a mark on its own
WE 2

Telling the two apart

State one difference between homologous and analogous structures, and give an example of each. (3 marks)

Point 1: the difference Homologous structures share the same underlying structure and a common ancestor; analogous structures share a function but have different evolutionary origins. Point 2: homologous example The pentadactyl limb of a human, whale and bat. Point 3: analogous example The wings of a bat and a butterfly, or the body shape of a shark and a dolphin. Same bones = homologous. Same job only = analogous. learn at least one analogous example properly; it is specifically asked for

💡 Exam tips

⚠ Common mistakes

Up next: Speciation — how one population becomes two species that can never breed together again.

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