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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Exposure to predators does not lead to the evolution of larger brains in experimental populations of threespine stickleback
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Exposure to predators does not lead to the evolution of larger brains in experimental populations of threespine stickleback

机译:暴露于捕食者不会导致血腥铅笔的实验群体中大脑的演变

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摘要

Natural selection is often invoked to explain differences in brain size among vertebrates. However, the particular agents of selection that shape brain size variation remain obscure. Recent studies suggest that predators may select for larger brains because increased cognitive and sensory abilities allow prey to better elude predators. Yet, there is little direct evidence that exposure to predators causes the evolution of larger brains in prey species. We experimentally tested this prediction by exposing families of 1000–2000 F2 hybrid benthic-limnetic threespine stickleback to predators under naturalistic conditions, along with matched controls. After two generations of selection, we found that fish from the predator addition treatment had significantly smaller brains (specifically smaller telencephalons and optic lobes) than fish from the control treatment. After an additional generation of selection, we reared experimental fish in a common environment and found that this difference in brain size was maintained in the offspring of fish from the predator addition treatment. Our results provide direct experimental evidence that (a) predators can indeed drive the evolution of brain size–-but not in the fashion commonly expected and (b) that the tools of experimental evolution can be used to the study the evolution of the vertebrate brain.
机译:通常调用自然选择以解释脊椎动物中脑大小的差异。然而,形状脑大小变化的选择的特定代理仍然模糊不清。最近的研究表明,捕食者可以选择较大的大脑,因为增加的认知和感觉能力允许牺牲更好的避难所。然而,几乎没有直接证据表明,暴露于捕食者导致较大的大脑在猎物种类中的演变。我们通过在自然条件下暴露1000-2000F2杂交液晶 - 跛行的普通刺捕食者的捕食者,通过曝光给予这种预测,以及匹配的对照。经过两代选择后,我们发现来自捕食者添加处理的鱼类比来自对照处理的鱼类显着较小的大脑(特别小的斜视和视神经叶)。在另外一代选择后,我们在常见环境中饲养实验鱼,发现脑大小的这种差异维持在鱼类的后代,从捕食者添加处理。我们的结果提供了直接的实验证据,(a)捕食者可以确实可以推动大脑尺寸的演变 - 但不是常用的时尚预期和(b)实验演化的工具可用于研究脊椎动物的进化。

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