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随机环境中斑块选择的演变

The evolution of patch selection in stochastic environments.

作者信息

Schreiber Sebastian J

机构信息

Department of Evolution and Ecology and the Center for Population Biology, University of California, Davis, CA 95616, USA.

出版信息

Am Nat. 2012 Jul;180(1):17-34. doi: 10.1086/665655. Epub 2012 May 17.

Abstract

A null model for habitat patch selection in spatially heterogeneous environments is the ideal free distribution (IFD), which assumes individuals have complete knowledge about the environment and can freely disperse. Under equilibrium conditions, the IFD predicts that local population growth rates are zero in all occupied patches, sink patches are unoccupied, and the fraction of the population selecting a patch is proportional to the patch's carrying capacity. Individuals, however, often experience stochastic fluctuations in environmental conditions and cannot respond to these fluctuations instantaneously. An evolutionary stability analysis for fixed patch-selection strategies reveals that environmental uncertainty disrupts the classical IFD predictions: individuals playing the evolutionarily stable strategy may occupy sink patches, local growth rates are negative and typically unequal in all patches, and individuals prefer higher-quality patches less than predicted by their carrying capacities. Spatial correlations in environmental fluctuations can enhance or marginalize these trends. The analysis predicts that continually increasing environmental variation first selects for range expansion, then selects for persisting coupled sink populations, and ultimately leads to regional extinction. In contrast, continually increasing habitat degradation first selects for range contraction and may select for persisting coupled sink populations before regional extinction. These results highlight the combined roles of spatial and temporal heterogeneity on the evolution of habitat selection.

摘要

在空间异质环境中,栖息地斑块选择的零模型是理想自由分布(IFD),它假设个体对环境有完全的了解并且能够自由扩散。在平衡条件下,IFD预测所有被占据斑块中的局部种群增长率为零,源斑块未被占据,并且选择一个斑块的种群比例与该斑块的承载能力成正比。然而,个体经常会经历环境条件的随机波动,并且不能立即对这些波动做出反应。对固定斑块选择策略的进化稳定性分析表明,环境不确定性会扰乱经典的IFD预测:采用进化稳定策略的个体可能会占据源斑块,所有斑块中的局部增长率为负且通常不相等,并且个体对高质量斑块的偏好低于其承载能力所预测的水平。环境波动中的空间相关性可以增强或削弱这些趋势。分析预测,持续增加的环境变化首先会选择范围扩张,然后选择持续存在的耦合源种群,最终导致区域灭绝。相比之下,持续增加的栖息地退化首先会选择范围收缩,并且在区域灭绝之前可能会选择持续存在的耦合源种群。这些结果突出了空间和时间异质性在栖息地选择进化中的综合作用。

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