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Plasticity of Escape Responses: Prior Predator Experience Enhances Escape Performance in a Coral Reef Fish

机译:逃避反应的可塑性:先前的捕食者经验可增强珊瑚鱼的逃避性能

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摘要

Teleost and amphibian prey undertake fast-start escape responses during a predatory attack in an attempt to avoid being captured. Although previously viewed as a reflex reaction controlled by the autonomic nervous system, the escape responses of individuals when repeatedly startled are highly variable in their characteristics, suggesting some behavioural mediation of the response. Previous studies have shown that fishes are able to learn from past experiences, but few studies have assessed how past experience with predators affect the fast-start response. Here we determined whether prior experience with the smell or sight of a predator (the Dottyback, Pseudochromis fuscus) affected the escape response of juveniles of the Spiny Chromis (Acanthochromis polyacanthus). Results show that individuals exposed to any of the predator cues prior to being startled exhibited a stronger escape response (i.e., reduced latency, increased escape distance, mean response speed, maximum response speed and maximum acceleration) when compared with controls. This study demonstrates the plasticity of escape responses and highlights the potential for naïve reef fish to take into account both visual and olfactory threat cues simultaneously to optimise the amplitude of their kinematic responses to perceived risk.
机译:Teleost和两栖猎物在掠夺性攻击中做出快速启动的逃生响应,以试图避免被捕获。尽管以前将其视为由植物神经系统控制的反射反应,但个体反复逃跑时的逃避反应在其特征方面变化很大,表明该反应的某些行为调节。先前的研究表明,鱼类能够从过去的经验中学到东西,但是很少有研究评估过捕食者的过去经验如何影响快速启动反应。在这里,我们确定了先前关于捕食者(Dottyback,Pseudochromis fuscus)的气味或视线的经验是否会影响多刺棘(Acanthochromis polyacanthus)幼体的逃逸反应。结果表明,与对照组相比,在受到惊吓之前暴露于任何捕食者提示下的个体表现出更强的逃避响应(即,潜伏期缩短,逃逸距离增加,平均响应速度,最大响应速度和最大加速度)。这项研究证明了逃避反应的可塑性,并强调了幼稚礁鱼同时考虑视觉和嗅觉威胁线索以优化其对感知风险的运动反应幅度的潜力。

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