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食物网结构中揭示的分区

Compartments revealed in food-web structure.

作者信息

Krause Ann E, Frank Kenneth A, Mason Doran M, Ulanowicz Robert E, Taylor William W

机构信息

Department of Fisheries and Wildlife, Educational Psychology, and Special Education, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Nature. 2003 Nov 20;426(6964):282-5. doi: 10.1038/nature02115.

Abstract

Compartments in food webs are subgroups of taxa in which many strong interactions occur within the subgroups and few weak interactions occur between the subgroups. Theoretically, compartments increase the stability in networks, such as food webs. Compartments have been difficult to detect in empirical food webs because of incompatible approaches or insufficient methodological rigour. Here we show that a method for detecting compartments from the social networking science identified significant compartments in three of five complex, empirical food webs. Detection of compartments was influenced by food web resolution, such as interactions with weights. Because the method identifies compartmental boundaries in which interactions are concentrated, it is compatible with the definition of compartments. The method is rigorous because it maximizes an explicit function, identifies the number of non-overlapping compartments, assigns membership to compartments, and tests the statistical significance of the results. A graphical presentation reveals systemic relationships and taxa-specific positions as structured by compartments. From this graphic, we explore two scenarios of disturbance to develop a hypothesis for testing how compartmentalized interactions increase stability in food webs.

摘要

食物网中的群落是分类单元的子群体,其中子群体内部存在许多强相互作用,而子群体之间只有少量弱相互作用。从理论上讲,群落能提高诸如食物网等网络的稳定性。由于方法不兼容或方法的严谨性不足,在实证食物网中很难检测到群落。在此,我们表明,一种源自社交网络科学的群落检测方法在五个复杂的实证食物网中的三个中识别出了显著的群落。群落的检测受到食物网分辨率的影响,例如带权重的相互作用。由于该方法识别出了相互作用集中的群落边界,所以它与群落的定义是相符的。该方法很严谨,因为它使一个明确的函数最大化,识别出非重叠群落的数量,为群落分配成员,并检验结果的统计显著性。图形展示揭示了由群落构建的系统关系和特定分类单元的位置。基于此图形,我们探讨了两种干扰情景,以提出一个假设,来检验群落化的相互作用如何提高食物网的稳定性。

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