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同类相食与杂食性的相互作用:对群落动态的影响

The interaction of cannibalism and omnivory: consequences for community dynamics.

作者信息

Rudolf Volker H W

机构信息

Department of Biology, University of Virginia, Charlottesville, Virginia 22904, USA.

出版信息

Ecology. 2007 Nov;88(11):2697-705. doi: 10.1890/06-1266.1.

Abstract

Although cannibalism is ubiquitous in food webs and frequent in systems where a predator and its prey also share a common resource (intraguild predation, IGP), its impacts on species interactions and the dynamics and structure of communities are still poorly understood. In addition, the few existing studies on cannibalism have generally focused on cannibalism in the top-predator, ignoring that it is frequent at intermediate trophic levels. A set of structured models shows that cannibalism can completely alter the dynamics and structure of three-species IGP systems depending on the trophic position where cannibalism occurs. Contrary to the expectations of simple models, the IG predator can exploit the resources more efficiently when it is cannibalistic, enabling the predator to persist at lower resource densities than the IG prey. Cannibalism in the IG predator can also alter the effect of enrichment, preventing predator-mediated extinction of the IG prey at high productivities predicted by simple models. Cannibalism in the IG prey can reverse the effect of top-down cascades, leading to an increase in the resource with decreasing IG predator density. These predictions are consistent with current data. Overall, cannibalism promotes the coexistence of the IG predator and IG prey. These results indicate that including cannibalism in current models can overcome the discrepancy between theory and empirical data. Thus, we need to measure and account for cannibalistic interactions to reliably predict the structure and dynamics of communities.

摘要

尽管同类相食在食物网中普遍存在,并且在捕食者及其猎物共享共同资源的系统中(种内捕食,IGP)也很常见,但其对物种相互作用以及群落动态和结构的影响仍知之甚少。此外,现有的少数关于同类相食的研究通常集中在顶级捕食者的同类相食上,而忽略了其在中间营养级也很常见这一情况。一组结构化模型表明,同类相食会根据其发生的营养级位置完全改变三物种种内捕食系统的动态和结构。与简单模型的预期相反,当种内捕食者具有同类相食行为时,它能够更有效地利用资源,使得捕食者能够在比种内捕食猎物更低的资源密度下持续存在。种内捕食者的同类相食还会改变资源富集的影响,防止简单模型预测的在高生产力水平下捕食者介导的种内捕食猎物灭绝。种内捕食猎物的同类相食会逆转自上而下的级联效应,导致随着种内捕食者密度降低资源增加。这些预测与当前数据一致。总体而言,同类相食促进了种内捕食者和种内捕食猎物的共存。这些结果表明,在当前模型中纳入同类相食可以克服理论与实证数据之间的差异。因此,我们需要测量并考虑同类相食的相互作用,以便可靠地预测群落的结构和动态。

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