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非等级扩散促进三营养级集合群落的稳定性和恢复力。

Nonhierarchical Dispersal Promotes Stability and Resilience in a Tritrophic Metacommunity.

作者信息

Pedersen Eric J, Marleau Justin N, Granados Monica, Moeller Holly V, Guichard Frédéric

出版信息

Am Nat. 2016 May;187(5):E116-28. doi: 10.1086/685773. Epub 2016 Mar 16.

Abstract

Community interactions (e.g., predation, competition) can be characterized by two factors: their strengths and how they are structured between and within species. Both factors play a role in determining community dynamics. In addition to trophic interactions, dispersal acts as an interaction between separate populations. As with other interactions, the structure of dispersal can affect the stability of a system. However, the primary structure that has been studied in consumer-resource models has been hierarchical dispersal, where between-patch dispersal rates increase with trophic level. Here we use analytical, numerical, and simulation approaches on a two-patch, three-species metacommunity model to investigate the relationship between structure and community stability and resilience. We show that metacommunity stability is greater in systems with both weak and strong dispersal rates. Our system is stabilized by the formation of patterns when predators disperse frequently and herbivores disperse rarely, and via asynchrony when both predators and herbivores disperse infrequently. Our results show how interaction strengths within both trophic and spatial networks shape metacommunity stability.

摘要

群落相互作用(如捕食、竞争)可由两个因素来表征:其强度以及它们在物种之间和物种内部的构建方式。这两个因素在决定群落动态中都发挥着作用。除了营养相互作用外,扩散是不同种群之间的一种相互作用。与其他相互作用一样,扩散的结构会影响系统的稳定性。然而,在消费者 - 资源模型中研究的主要结构是分层扩散,即斑块间扩散率随营养级升高而增加。在这里,我们对一个双斑块、三物种的集合群落模型采用分析、数值和模拟方法,以研究结构与群落稳定性和恢复力之间的关系。我们表明,在扩散率较弱和较强的系统中,集合群落稳定性更高。当捕食者频繁扩散而食草动物很少扩散时,我们的系统通过模式的形成而稳定;当捕食者和食草动物都很少扩散时,则通过异步性来稳定。我们的结果表明了营养和空间网络内的相互作用强度如何塑造集合群落稳定性。

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