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首页> 外文期刊>Journal of Theoretical Biology >Evolution of dispersal in explicitly spatial metacommunities.
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Evolution of dispersal in explicitly spatial metacommunities.

机译:在明确的空间元社区中传播的演变。

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摘要

We apply an evolutionary game theoretic approach to the evolution of dispersal in explicitly spatial metacommunities, using a flexible parametric class of dispersal kernels, namely 2Dt kernels, and study the resulting evolutionary dynamics and outcomes. We observe strong selective pressure on mean dispersal distance (i.e., the first moment), and weaker, but significant, one on the shape of dispersal kernel (i.e., higher moments). We investigate the effects of landscape topology and spatial heterogeneity on the resulting 'optimal' dispersal kernels. The shape-importantly the tail structure-and stability of evolutionarily optimal dispersal strategies are strongly affected by landscape topology or connectivity. Specifically, the results suggest that the optimal dispersal kernels in the river network topology have heavier tails and are stable, while those in the direct topology, where organisms are allowed to travel directly from one location to another, have relatively thin tails and may be unstable. We also find that habitat spatial heterogeneity enables coexistence and controls spatial distribution of distinct groups of dispersal strategies and that alteration in topology alone may not be sufficient to change such coexistence. This work provides a tool to translate environmental changes such as global climate change and human intervention into changes in dispersal behavior, which in turn may lead to important alterations of biodiversity and biological invasion patterns.
机译:我们使用演化博弈论方法,通过使用灵活的参量类分散核(即2Dt核)对明确的空间元社区中的分散演化进行研究,并研究由此产生的演化动力学和结果。我们观察到平均弥散距离(即一阶矩)有很强的选择压力,而弥散核的形状(即一阶矩)则弱但显着。我们研究了景观拓扑和空间异质性对产生的“最佳”分散核的影响。地形拓扑结构或连通性强烈影响形状(最重要的是尾部结构)和进化最优分散策略的稳定性。具体而言,结果表明,河网拓扑结构中的最佳扩散核具有较重的尾巴并且是稳定的,而直接拓扑结构中允许有机体从一个位置直接移动到另一位置的尾巴则相对较细,并且可能不稳定。 。我们还发现,栖息地的空间异质性可以实现共存,并控制分散策略的不同组的空间分布,仅拓扑的改变可能不足以改变这种共存。这项工作提供了一种工具,可以将全球气候变化和人类干预等环境变化转化为传播行为的变化,进而可能导致生物多样性和生物入侵方式的重大改变。

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