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河流集合种群网络中的同步与稳定性

Synchronisation and stability in river metapopulation networks.

作者信息

Yeakel J D, Moore J W, Guimarães P R, de Aguiar M A M

机构信息

Earth to Ocean Research Group, Departments of Biological Sciences & Resource and Environmental Management, Simon Fraser University, Burnaby, BC, V5A 1S6, Canada.

出版信息

Ecol Lett. 2014 Mar;17(3):273-83. doi: 10.1111/ele.12228. Epub 2013 Dec 5.

Abstract

Spatial structure in landscapes impacts population stability. Two linked components of stability have large consequences for persistence: first, statistical stability as the lack of temporal fluctuations; second, synchronisation as an aspect of dynamic stability, which erodes metapopulation rescue effects. Here, we determine the influence of river network structure on the stability of riverine metapopulations. We introduce an approach that converts river networks to metapopulation networks, and analytically show how fluctuation magnitude is influenced by interaction structure. We show that river metapopulation complexity (in terms of branching prevalence) has nonlinear dampening effects on population fluctuations, and can also buffer against synchronisation. We conclude by showing that river transects generally increase synchronisation, while the spatial scale of interaction has nonlinear effects on synchronised dynamics. Our results indicate that this dual stability - conferred by fluctuation and synchronisation dampening - emerges from interaction structure in rivers, and this may strongly influence the persistence of river metapopulations.

摘要

景观中的空间结构会影响种群稳定性。稳定性的两个相互关联的组成部分对种群的持续存在有着重大影响:其一,统计稳定性表现为缺乏时间波动;其二,同步性作为动态稳定性的一个方面,会削弱集合种群的救援效应。在此,我们确定河网结构对河流集合种群稳定性的影响。我们引入一种将河网转换为集合种群网络的方法,并通过分析表明波动幅度是如何受相互作用结构影响的。我们发现河流集合种群的复杂性(以分支普遍程度衡量)对种群波动具有非线性抑制作用,并且还能缓冲同步性。我们通过研究表明,河流样带通常会增强同步性,而相互作用的空间尺度对同步动态具有非线性影响。我们的研究结果表明,这种由波动和同步抑制赋予的双重稳定性源自河流中的相互作用结构,这可能会强烈影响河流集合种群的持续存在。

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