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Evolution of prey behavior in response to changes in predation regime: Damselflies in fish and dragonfly lakes

机译:捕食方式变化对猎物行为的演变:鱼类和蜻蜓湖中的蜻蜓

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In a large behavioral experiment we reconstructed the evolution of behavioral responses to predators to explore how interactions with predators have shaped the evolution of their prey's behavior. All Enallagma damselfly species reduced both movement and feeding in the presence of coexisting predators. Some Enallagma species inhabit water bodies with both fish and dragonflies, and these species responded to the presence of both predators, whereas other Enallagma species inhabit water bodies that have only large dragonflies as predators, and these species only responded to the presence of dragonflies. Lineages that shifted to live with large dragonflies showed no evolution in behaviors expressed in the presence of dragonflies, but they evolved greater movement in the absence of predators and greater movement and feeding in the presence of fish. These results suggest that Enallagma species have evolutionarily lost the ability to recognize fish as a predator. Because species coexisting with only dragonfly predators have also evolved the ability to escape attacking dragonfly predators by swimming, the decreased predation risk associated with foraging appears to have shifted the balance of the foraging/predation risk trade-off to allow increased activity in the absence of mortality threats to evolve in these lineages. Our results suggest that evolution in response to changes in predation regime may have greater consequences for characters expressed in the absence of mortality threats because of how the balance between the conflicting demands of growth and predation risk are altered. [References: 89]
机译:在一个大型的行为实验中,我们重构了对捕食者的行为反应的演变,以探索与捕食者的互动如何塑造其捕食者行为的演变。在存在并存的捕食者的情况下,所有Enallagma豆娘物种都减少了迁徙和觅食。一些Enallagma物种居住在鱼和蜻蜓的水体中,并且这些物种对两种掠食者的存在做出了响应,而其他Enallagma物种居住在只有大蜻蜓作为食肉动物的水体中,而这些物种仅对蜻蜓的存在做出了响应。转为与大型蜻蜓一起生活的血统没有显示出蜻蜓存在时所表现出的行为进化,但是在没有掠食者的情况下它们进化出更大的运动,而在有鱼的情况下进化出更大的运动和觅食。这些结果表明,Enallagma种在进化上已经丧失了将鱼识别为捕食者的能力。由于仅与蜻蜓捕食者共存的物种也已经进化出通过游泳逃避攻击蜻蜓捕食者的能力,与觅食相关的捕食风险降低似乎已经改变了觅食/捕食风险权衡的平衡,从而在没有捕食者的情况下增加了活动。这些谱系中的死亡威胁正在演变。我们的研究结果表明,响应于捕食方式变化的进化可能会对没有死亡威胁的性状产生更大的影响,因为增长需求之间的平衡与捕食风险之间的平衡是如何改变的。 [参考:89]

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