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寄生蜂对集团内捕食的规避驱动了多营养级生态网络中的天敌互补性。

Parasitoid avoidance of intraguild predation drives enemy complementarity in a multi-trophic ecological network.

作者信息

Hennessy Andrew B, Anderson Riley M, Mitchell Nora, Mooney Kailen A, Singer Michael S

机构信息

Department of Biology, Wesleyan University, Middletown, Connecticut, USA.

Department of Biology, University of Wisconsin, Eau Claire, Wisconsin, USA.

出版信息

Ecology. 2025 Jan;106(1):e4483. doi: 10.1002/ecy.4483.

Abstract

How consumer diversity determines consumption efficiency is a central issue in ecology. In the context of predation and biological control, this relationship concerns predator diversity and predation efficiency. Reduced predation efficiency can result from different predator taxa eating each other in addition to their common prey (interference due to intraguild predation). By contrast, multiple predator taxa with overlapping but complementary feeding niches can generate increased predation efficiency on their common prey (enemy complementarity). When viewed strictly from an ecological perspective, intraguild predation and enemy complementarity are opposing forces. However, from an evolutionary ecology perspective, predators facing strong intraguild predation may evolve traits that reduce their predation risk, possibly leading to niche complementarity between enemies; thus, selection from intraguild predation may lead to enemy complementarity rather than opposing it. As specialized predators that live in or on their hosts, parasitoids are subjected to intraguild predation from generalist predators that consume the parasitoids' hosts. The degree to which parasitoid-predator interactions are ruled by interference versus enemy complementarity has been debated. Here, we address this issue with field experiments in a forest community consisting of multiple species of trees, herbivorous caterpillars, parasitoids, ants, and birds. Our experiments and analyses found no interference effects, but revealed clear evidence for complementarity between parasitoids and birds (not ants). Parasitism rates by hymenopterans and dipterans were negatively associated with bird predation risk, and the variation in the strength of this negative association suggests that this enemy complementarity was due to parasitoid avoidance of intraguild predation. We further argue that avoidance of intraguild predation by parasitoids and other arthropod predators may explain enigmatic patterns in vertebrate-arthropod-plant food webs in a variety of terrestrial ecosystems.

摘要

消费者多样性如何决定消费效率是生态学中的核心问题。在捕食和生物防治的背景下,这种关系涉及捕食者多样性和捕食效率。捕食效率降低可能是由于不同的捕食者类群除了捕食共同猎物外还相互捕食(由于集团内捕食导致的干扰)。相比之下,具有重叠但互补取食生态位的多个捕食者类群可以提高对其共同猎物的捕食效率(天敌互补性)。严格从生态学角度看,集团内捕食和天敌互补性是相反的力量。然而,从进化生态学角度看,面临强烈集团内捕食的捕食者可能会进化出降低其捕食风险的特征,这可能导致天敌之间的生态位互补;因此,集团内捕食的选择可能导致天敌互补而不是与之相反。作为生活在宿主体内或体表的特化捕食者,寄生蜂会受到消耗寄生蜂宿主的广食性捕食者的集团内捕食。寄生蜂与捕食者之间的相互作用在多大程度上受干扰或天敌互补性的支配一直存在争议。在此,我们通过在一个由多种树木、食草毛虫、寄生蜂、蚂蚁和鸟类组成的森林群落中进行野外实验来解决这个问题。我们的实验和分析没有发现干扰效应,但揭示了寄生蜂和鸟类(而非蚂蚁)之间存在明显互补性的证据。膜翅目和双翅目的寄生率与鸟类捕食风险呈负相关,这种负相关强度的变化表明这种天敌互补性是由于寄生蜂避免集团内捕食。我们进一步认为,寄生蜂和其他节肢动物捕食者对集团内捕食的避免可能解释了各种陆地生态系统中脊椎动物 - 节肢动物 - 植物食物网中的神秘模式。

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