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Scientists have long recognised the incredible diversity within a species. But they thought it reflected evolutionary changes that unfolded imperceptibly, over millions of years. That divergence between populations within a species was enforced, according to Ernst Mayr, the great evolutionary biologist of the 1940s, when a population was separated from the rest of the species by a mountain range or a desert, preventing breeding across the divide over geologic scales of time. Without the separation, gene flow was relentless. But as the separation persisted, the isolated population grew apart and speciation occurred.

In the mid-1960s, the biologist Paul Ehrlich author of The Population Bomb (1968) and his Stanford University colleague Peter Raven challenged Mayr's ideas about speciation. They had studied checkerspot butterflies living in the Jasper Ridge Biological Preserve in Califomia, and it soon became clear that they were not examining a single population. Through years of capturing, marking and then recapturing the butterflies, they were able to prove that within the population, spread over just 5050 acres of suitable checkerspot habitat, there were three groups that rarely interacted despite their very close proximity.

Among other ideas, Ehrlich and Raven argued in a now classic paper from 19691969 that gene flow was not as predictable and ubiquitous as Mayr and his cohort maintained, and thus evolutionary divergence between neighbouring groups in a population was probably common. They also asserted that isolation and gene flow were less important to evolutionary divergence than natural selection (when factors such as mate choice, weather, disease or predation cause better-adapted individuals to survive and pass on their successful genetic traits). For example, Ehrlich and Raven suggested that, without the force of natural selection, an isolated population would remain unchanged and that, in other scenarios, natural selection could be strong enough to overpower gene flow.

Which one of the following best sums up Ehrlich and Raven's argument in their classic 1969 paper?

Solution

āœ… Correct Option: 3

From passage: "They also asserted that isolation and gene flow were less important to evolutionary divergence than natural selection"

The key insight: Ehrlich and Raven weren't just saying Mayr was wrong -> they were proposing what actually drives evolutionary change -> natural selection matters more than physical separation.


Elimination Strategy: Look for the option that states their positive thesis (what they believed) rather than just criticism or evidence.

🟠 Option 1 -> partial-truth -> says Mayr was wrong about physical separation but doesn't tell us what Ehrlich and Raven thought was the main cause

🟠 Option 2 -> evidence-only -> this is just their observation about butterflies, not their argument about how evolution works in general

🟢 Option 3 -> captures main thesis -> directly matches passage: isolation was "less important" than natural selection for evolutionary change

🟠 Option 4 -> partial-truth -> mentions gene flow being less predictable but misses their key point about natural selection being more important than isolation

Student confusion likely between Options 3 and 4 since both seem to challenge Mayr. But Option 4 only gives half the story -> it says what's wrong with gene flow but doesn't state what they think is more important (natural selection).

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