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模型集合群落中的生境异质性假说与边缘效应

Habitat heterogeneity hypothesis and edge effects in model metacommunities.

作者信息

Hamm Michaela, Drossel Barbara

机构信息

Institut für Festkörperphysik, Technische Universität Darmstadt, Hochschulstraße 6, 64289 Darmstadt, Germany.

Institut für Festkörperphysik, Technische Universität Darmstadt, Hochschulstraße 6, 64289 Darmstadt, Germany.

出版信息

J Theor Biol. 2017 Aug 7;426:40-48. doi: 10.1016/j.jtbi.2017.05.022. Epub 2017 May 19.

Abstract

Spatial heterogeneity is an inherent property of any living environment and is expected to favour biodiversity due to a broader niche space. Furthermore, edges between different habitats can provide additional possibilities for species coexistence. Using computer simulations, this study examines metacommunities consisting of several trophic levels in heterogeneous environments in order to explore the above hypotheses on a community level. We model heterogeneous landscapes by using two different sized resource pools and evaluate the combined effect of dispersal and heterogeneity on local and regional species diversity. This diversity is obtained by running population dynamics and evaluating the robustness (i.e., the fraction of surviving species). The main results for regional robustness are in agreement with the habitat heterogeneity hypothesis, as the largest robustness is found in heterogeneous systems with intermediate dispersal rates. This robustness is larger than in homogeneous systems with the same total amount of resources. We study the edge effect by arranging the two types of resources in two homogeneous blocks. Different edge responses in diversity are observed, depending on dispersal strength. Local robustness is highest for edge habitats that contain the smaller amount of resource in combination with intermediate dispersal. The results show that dispersal is relevant to correctly identify edge responses on community level.

摘要

空间异质性是任何生存环境的固有属性,由于更广阔的生态位空间,预计它会有利于生物多样性。此外,不同栖息地之间的边缘地带可以为物种共存提供更多可能性。本研究通过计算机模拟,考察了由异质环境中几个营养级组成的集合群落,以便在群落层面探索上述假设。我们通过使用两个不同大小的资源库来模拟异质景观,并评估扩散和异质性对局部和区域物种多样性的综合影响。这种多样性是通过运行种群动态并评估稳健性(即存活物种的比例)来获得的。区域稳健性的主要结果与栖息地异质性假设一致,因为在具有中等扩散率的异质系统中发现了最大的稳健性。这种稳健性比具有相同资源总量的同质系统中的稳健性更大。我们通过将两种类型的资源安排在两个同质区域来研究边缘效应。根据扩散强度的不同,观察到了多样性方面不同的边缘响应。对于包含较少资源且具有中等扩散的边缘栖息地,局部稳健性最高。结果表明,扩散对于在群落层面正确识别边缘响应至关重要。

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