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Disrupted learning: habitat degradation impairs crucial antipredator responses in naive prey

机译:学习中断:栖息地退化削弱了幼稚猎物中关键的反捕食者反应

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摘要

Habitat degradation is a global problem and one of the main causes of biodiversity loss. Though widespread, the mechanisms that underlie faunal changes are poorly understood. In tropical marine systems, corals play a crucial role in forming habitat, but coral cover on many reefs is declining sharply. Coral degradation affects the olfactory cues that provide reliable information on the presence and intensity of threat. Here, we show for the first time that the ability of a habitat generalist to learn predators using an efficient and widespread method of predator learning is compromised in degraded coral habitats. Results indicate that chemical alarm cues are no longer indicative of a local threat for the habitat generalist (the damselfish, Pomacentrus amboinensis), and these cues can no longer be used to learn the identity of novel predators in degraded habitats. By contrast, a rubble specialist and congeneric (Pomacentrus coelestis) responded to olfactory threat cues regardless of background environment and could learn the identity of a novel predator using chemical alarm cues. Understanding how some species can cope with or acclimate to the detrimental impacts of habitat degradation on risk assessment abilities will be crucial to defining the scope of resilience in threatened communities.
机译:栖息地退化是一个全球性问题,也是生物多样性丧失的主要原因之一。尽管广泛存在,但对动物区系改变的机制却知之甚少。在热带海洋系统中,珊瑚在形成栖息地方面起着至关重要的作用,但许多礁石上的珊瑚覆盖率却急剧下降。珊瑚降解会影响嗅觉提示,从而提供有关威胁的存在和强度的可靠信息。在这里,我们首次证明,在退化的珊瑚栖息地中,栖息地通才能够使用有效且广泛的捕食者学习方法来学习捕食者的能力。结果表明,化学警报提示不再表明对生境多面手(该死的雀鲷,Pomacentrus amboinensis)造成了局部威胁,这些提示不再可以用于了解退化栖息地中新型捕食者的身份。相比之下,瓦砾专家和同类动物(Pomacentrus coelestis)不管背景环境如何,都能对嗅觉威胁线索做出反应,并且可以使用化学警报线索来了解新型捕食者的身份。了解某些物种如何应对或适应生境退化对风险评估能力的有害影响,对于确定受威胁社区的复原力范围至关重要。

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