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结构不对称与多样食物网的稳定性

Structural asymmetry and the stability of diverse food webs.

作者信息

Rooney Neil, McCann Kevin, Gellner Gabriel, Moore John C

机构信息

Department of Integrative Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

Nature. 2006 Jul 20;442(7100):265-9. doi: 10.1038/nature04887.

Abstract

Untangling the influence of human activities on food-web stability and persistence is complex given the large numbers of species and overwhelming number of interactions within ecosystems. Although biodiversity has been associated with stability, the actual structures and processes that confer stability to diverse food webs remain largely unknown. Here we show that real food webs are structured such that top predators act as couplers of distinct energy channels that differ in both productivity and turnover rate. Our theoretical analysis shows that coupled fast and slow channels convey both local and non-local stability to food webs. Alarmingly, the same human actions that have been implicated in the loss of biodiversity also directly erode the very structures and processes that we show to confer stability on food webs.

摘要

鉴于生态系统中物种数量众多且相互作用繁杂,厘清人类活动对食物网稳定性和持久性的影响颇具难度。尽管生物多样性与稳定性相关联,但赋予多样食物网稳定性的实际结构和过程仍 largely 未知。我们在此表明,真实的食物网结构使得顶级捕食者充当不同能量通道的耦合器,这些能量通道在生产力和周转率方面均存在差异。我们的理论分析表明,耦合的快速和慢速通道为食物网传递局部和非局部稳定性。令人担忧的是,那些与生物多样性丧失相关的人类行为,也直接侵蚀了我们所表明的赋予食物网稳定性的结构和过程。

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