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集合群落中跨尺度空间变异性的内在和外在原因。

Intrinsic and extrinsic causes of spatial variability across scales in a metacommunity.

作者信息

Guichard Frederic, Steenweg Robin

机构信息

Department of Biology, McGill University, 1205 Docteur Penfield, Montreal, Quebec, Canada H3A1B1.

出版信息

J Theor Biol. 2008 Jan 7;250(1):113-24. doi: 10.1016/j.jtbi.2007.09.018. Epub 2007 Sep 21.

Abstract

The relative importance of extrinsic and intrinsic causes of variability is among the oldest unresolved problems in ecology. However, the interaction between large-scale intrinsic variability in species abundance and environmental heterogeneity is still unknown. We use a metacommunity model with disturbance-recovery dynamics to resolve the interaction between scales of environmental heterogeneity, biotic processes and of intrinsic variability. We explain how population density increases with environmental variability only when its scale matches that of intrinsic patterns of abundance, through their ability to develop in heterogeneous environments. Succession dynamics reveals how the strength of local species interactions, through its control of intrinsic variability, can in turn control the scale of metapopulation response to environmental scales. Our results show that the environment and species density might fail to show any correlation despite their strong causal association. They more generally suggest that the spatial scale of ecological processes might not be sufficient to build a predictive framework for spatially heterogeneous habitats, including marine reserve networks.

摘要

在生态学中,可变性的外在和内在原因的相对重要性是最古老的未解决问题之一。然而,物种丰富度的大规模内在可变性与环境异质性之间的相互作用仍然未知。我们使用一个具有干扰-恢复动态的集合群落模型来解析环境异质性、生物过程和内在可变性尺度之间的相互作用。我们解释了种群密度如何仅在其尺度与丰度的内在模式尺度相匹配时,通过其在异质环境中发展的能力,随环境可变性而增加。演替动态揭示了局部物种相互作用的强度如何通过对内在可变性的控制,进而控制集合种群对环境尺度响应的尺度。我们的结果表明,尽管环境与物种密度之间存在强烈的因果关联,但它们可能并未表现出任何相关性。它们更普遍地表明,生态过程的空间尺度可能不足以构建一个针对包括海洋保护区网络在内的空间异质栖息地的预测框架。

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