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捕食者的功能反应受猎物诱导防御的改变而改变。

Predator functional response changed by induced defenses in prey.

机构信息

Department of Biology, University of Victoria, P.O. Box 3020, Victoria, British Columbia V8W 3N5, Canada.

出版信息

Am Nat. 2010 Dec;176(6):723-31. doi: 10.1086/657040. Epub 2010 Oct 18.

Abstract

Functional responses play a central role in the nature and stability of predator-prey population dynamics. Here we investigate how induced defenses affect predator functional responses. In experimental communities, prey (Paramecium) expressed two previously undocumented inducible defenses--a speed reduction and a width increase--in response to nonlethal exposure to predatory Stenostomum. Nonlethal exposure also changed the shape of the predator's functional response from Type II to Type III, consistent with changes in the density dependence of attack rates. Handling times were also affected by prey defenses, increasing at least sixfold. These changes show that induced changes in prey have a real defensive function. At low prey densities, induction led to lower attack success; at high prey densities, attack rates were actually higher for induced prey. However, induction increased handling times sufficiently that consumption rates of defended prey were lower than those of undefended prey. Modification of attack rate and handling time has important potential consequences for population dynamics; Type III functional responses can increase the stability of population dynamics and persistence because predation on small populations is low, allowing a relict population to survive. Simulations of a predator-prey population dynamic model revealed the stabilizing potential of the Type III response.

摘要

功能反应在捕食者-猎物种群动态的性质和稳定性中起着核心作用。在这里,我们研究了诱导防御如何影响捕食者的功能反应。在实验群落中,猎物(草履虫)在受到非致命性捕食性 Stenostomum 暴露时表现出两种以前未记录的可诱导防御——速度降低和宽度增加。非致命性暴露还改变了捕食者的功能反应形状,从 II 型变为 III 型,与攻击率的密度依赖性变化一致。处理时间也受到猎物防御的影响,至少增加了六倍。这些变化表明,诱导的猎物变化具有真正的防御功能。在低猎物密度下,诱导会导致攻击成功率降低;在高猎物密度下,诱导猎物的攻击率实际上更高。然而,诱导增加了处理时间,以至于受保护猎物的消耗率低于未受保护猎物的消耗率。攻击率和处理时间的改变对种群动态具有重要的潜在影响;III 型功能反应可以增加种群动态的稳定性和持久性,因为对小种群的捕食率较低,允许残留种群存活。捕食者-猎物种群动态模型的模拟揭示了 III 型反应的稳定潜力。

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