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Interactions between background matching and motion during visual detection can explain why cryptic animals keep still

机译:视觉检测过程中背景匹配和运动之间的相互作用可以解释为什么神秘动物会保持静止

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摘要

A widespread example of coevolution between behaviour and morphology is that crypsis is associated with motionlessness. Surprisingly, however, the adaptive function of this association has never been investigated experimentally. We tested whether the risk of being detected by a predator is affected by crypsis, movement or an interaction between these two traits. We show that, to avoid being detected and attacked by three-spined sticklebacks (Gasterosteus aculeatus L.), chironomid larvae need both to match their background and to keep still. Additionally, relatively more active individuals were targeted from cryptic prey groups, but not from conspicuous ones. Therefore, rather than crypsis and keeping still both contributing to reducing detection, the two traits are synergistic in reducing detection rates. This interdependence has implications for the coevolution of background matching and motion, and also between anti-predator traits and predators' visual systems.
机译:行为和形态之间共同进化的一个广泛例子是,低温与静止不动有关。但是,令人惊讶的是,从未通过实验研究这种关联的自适应功能。我们测试了被掠食者,移动或这两个特征之间的相互作用是否会影响被掠食者发现的风险。我们证明,为避免被三棘棘背鱼(Gasterosteus aculeatus L.)探测和攻击,尺虫幼虫既需要匹配背景又要保持静止。另外,相对活跃的个体是来自隐秘猎物组的目标,而不是显眼的目标。因此,这两个特征在降低检测率方面具有协同作用,而不是孤岛化并且仍然保持两者均有助于降低检测率。这种相互依存关系对背景匹配和运动的协同进化以及反捕食者特征与捕食者视觉系统之间的协同进化都有影响。

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