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Experimental evidence that predation promotes divergence in adaptive radiation

机译:实验证明掠食促进了适应性辐射的发散

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Adaptive radiation is the evolution of ecological and phenotypic diversity within a rapidly multiplying lineage. Recent studies have identified general patterns in adaptive radiation and inferred that resource competition is a primary factor driving phenotypic divergence. The role and importance of other processes, such as predation, remains controversial. Here we use Timema stick insects to show that adaptive radiation can be driven by divergent selection from visual predators. Ecotypes using different host-plant species satisfy criteria for the early stages of adaptive radiation and differ in quantitative aspects of color, color pattern, body size, and body shape. A manipulative field experiment demonstrates that the direction and strength of divergent selection on these traits is strongly positively correlated with the direction and magnitude of their population divergence in nature but only when selection is estimated in the presence of predation. Our results indicate that both competition and predation may commonly serve as mechanisms of adaptive radiation.
机译:适应性辐射是在迅速繁殖的世系内生态和表型多样性的演变。最近的研究已经确定了适应性辐射的一般模式,并推断资源竞争是驱动表型差异的主要因素。其他过程(例如捕食)的作用和重要性仍然存在争议。在这里,我们使用Timema竹节虫来显示自适应辐射可以由视觉掠食者的发散选择来驱动。使用不同寄主植物物种的生态型满足适应性辐射早期的标准,并且在颜色,颜色模式,体型和体型的定量方面也有所不同。一项现场实验表明,在这些性状上不同选择的方向和强度与它们自然界中种群不同的方向和大小呈正相关,但只有在存在捕食时才估计选择。我们的结果表明,竞争和掠夺都可能通常充当适应性辐射的机制。

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