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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.

The author discusses Mayr, Ehrlich and Raven to demonstrate that

Solution

āœ… Correct Option: 3

We need to understand why the author brings up these three scientists and their different ideas about how new species form.

From passage: "In the mid-1960s, the biologist Paul Ehrlich... and his Stanford University colleague Peter Raven challenged Mayr's ideas about speciation."

The passage shows us: Mayr had one theory -> Ehrlich and Raven disagreed and proposed something different -> This shows scientists don't all agree on what causes speciation.

Think of it like this: Author presents Mayr's view -> Then shows how Ehrlich and Raven disagreed -> This demonstrates scientific debate about the topic.


Now let's eliminate the wrong options:

šŸ”“ Option 1 -> irrelevant -> The passage talks about scientific disagreement, not social controversy. Nothing suggests evolution is "sensitive" - just that scientists have different theories about how it works.

šŸ”“ Option 2 -> unsupported -> The passage never says Ehrlich and Raven's ideas became widely accepted. It just shows they challenged Mayr's ideas. We can't assume acceptance from the passage.

🟢 Option 3 is correct -> The author shows Mayr believed one thing about speciation causes, then Ehrlich and Raven believed something different. This perfectly demonstrates that scientists debate what causes speciation.

šŸ”“ Option 4 -> overstates -> The passage uses checkerspot butterflies as an example of their ideas, but never claims they're the best example. The word "best" makes this too strong.

The key insight: When an author presents competing scientific theories, they're showing there's ongoing debate in that field.

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