首页> 外文期刊>Journal of Ethology >Tadpoles of the bronze frog (Rana temporalis) assess predation risk before evoking antipredator defense behavior
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Tadpoles of the bronze frog (Rana temporalis) assess predation risk before evoking antipredator defense behavior

机译:蛙(Ranatempalis)在唤起反捕食者防御行为之前评估捕食风险

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Predation threat-associated behavioral response was studied in Rana temporalis tadpoles to discover the importance of predators’ visual and chemical cues (kairomones and diet-derived metabolites of consumed prey) in evoking antipredator behavior. The caged predators (dragonfly larvae) fed on prey tadpoles or insects (Notonecta spp.) and water conditioned with the predators provided the threat stimuli to the tadpole prey. The predators’ visual cues were ineffective in evoking antipredator behaviors in the tadpole prey. However, exposure to caged tadpole-fed predators or water conditioned with tadpole-fed predators elicited predator avoidance behavior in the tadpoles; they stayed away from the predators, significantly reduced swimming activity (swimming time and distance traveled), and increased burst speed. Interestingly, exposure to water conditioned with starved predators did not elicit any antipredator behavior in the prey. Further, the antipredator responses of predator-experienced tadpoles were significantly greater than those exhibited by predator-naïve tadpoles. The study shows that R. temporalis tadpoles assess predation threat based exclusively on chemical cues emanating from the predators’ dietary metabolites and that the inclusion of conspecific prey items in the diet of the predators is perceived as a threat. The study also shows that antipredator behavior in these tadpoles is innate and is enhanced during subsequent encounters with the predators.
机译:在颞蛙(Ranatempalis)studied中研究了与捕食相关的行为反应,以发现捕食者的视觉和化学线索(海洛酮和饮食来源的消耗性猎物代谢产物)在引起反捕食者行为方面的重要性。用捕食性or或昆虫(Notonecta spp。)为食的笼中捕食者(蜻蜓幼虫)和以捕食者为食的水为the提供了威胁刺激。食肉动物的视觉提示无法有效激发t猎物的反食肉动物行为。然而,暴露于笼养的pole食肉食动物或以t食的食肉为食的水会引起in的食肉动物回避行为。他们远离掠食者,大大减少了游泳活动(游泳时间和行进距离),并提高了爆发速度。有趣的是,暴露于饥饿的捕食者条件下的水中并不会引起猎物的任何反捕食者行为。此外,体验过捕食者的t的抗捕食者反应显着大于未捕食者的ï所表现出的反应。研究表明,颞叶temporal只根据捕食者饮食代谢产物产生的化学线索来评估捕食威胁,并且将同种猎物纳入捕食者的饮食中被视为一种威胁。该研究还表明,这些t中的反捕食者行为是先天的,在与捕食者的随后相遇中会增强。

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