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Prey state shapes the effects of temporal variation in predation risk

机译:猎物状态决定了捕食风险中时间变化的影响

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摘要

The ecological impacts of predation risk are influenced by how prey allocate foraging effort across periods of safety and danger. Foraging decisions depend on current danger, but also on the larger temporal, spatial or energetic context in which prey manage their risks of predation and starvation. Using a rocky intertidal food chain, we examined the responses of starved and fed prey (Nucella lapillus dogwhelks) to different temporal patterns of risk from predatory crabs (Carcinus maenas). Prey foraging activity declined during periods of danger, but as dangerous periods became longer, prey state altered the magnitude of risk effects on prey foraging and growth, with likely consequences for community structure (trait-mediated indirect effects on basal resources, Mytilus edulis mussels), prey fitness and trophic energy transfer. Because risk is inherently variable over time and space, our results suggest that non-consumptive predator effects may be most pronounced in productive systems where prey can build energy reserves during periods of safety and then burn these reserves as ‘trophic heat’ during extended periods of danger. Understanding the interaction between behavioural (energy gain) and physiological (energy use) responses to risk may illuminate the context dependency of trait-mediated trophic cascades and help explain variation in food chain length.
机译:捕食风险的生态影响受猎物如何在安全和危险时期分配觅食力的影响。觅食决策不仅取决于当前的危险,还取决于更大的时间,空间或精力充沛的环境,在这种环境中,猎物可以管理其捕食和饥饿的风险。我们使用岩石间的食物链,研究了饥饿和摄食的捕食者(Nucella lapillus dogwhelks)对掠夺蟹(Carcinus maenas)的不同时间风险模式的反应。在危险时期,猎物的觅食活动减少,但是随着危险时期的延长,猎物状态改变了对猎物觅食和生长的风险影响的程度,可能会对社区结构造成影响(特质介导的对基础资源的间接影响,贻贝贻贝) ,猎物适应性和营养能量传递。由于风险在时间和空间上具有内在的可变性,因此我们的结果表明,非生产性捕食者的影响在生产系统中最为明显,在这种生产系统中,猎物可以在安全期内建立能量储备,然后在较长时期内将这些储备燃烧为“营养热”。危险。了解行为(能量获取)和生理(能量使用)对风险的反应之间的相互作用可能会阐明特质介导的营养级联反应的背景依赖性,并有助于解释食物链长度的变化。

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