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Evolving metacommunities: Toward an evolutionary perspective on metacommunities

机译:不断发展的元社区:关于元社区的进化观点

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The metacommunity framework predicts that local coexistence depends on the outcome of local species interactions and regional migration. In analogous fashion, spatial structure among populations can shape species interactions through evolutionary mechanisms. Yet, most metacommunity theories assume that populations do not evolve. Here, we evaluate how evolution shapes local species coexistence and exclusion within the multiscale and multispecies context embodied by the metacommunity framework. In general, coexistence in joint ecological-evolutionary models requires low to intermediate dispersal rates that can promote maintenance of both regional species and genetic diversity. These conditions support a set of key mechanisms that modify patterns of species coexistence including local adaptation, gene storage effects, genetic rescue effects, spatial genetic subsidies, and metacommunity evolution. Multispecies extensions indicate that correlated selection can further alter the outcome of interspecific interactions depending on the magnitude and direction of correlations and shape of fitness trade-offs. We suggest that an evolving metacommunity perspective has the potential to generate novel predictions about community structure and function by incorporating the genetic and species diversity that characterize. natural communities. In adopting such A perspective, we seek to facilitate understanding about the interactions between evolutionary and metacommunity dynamics.
机译:元社区框架预测,局部共存取决于局部物种相互作用和区域迁移的结果。以类似的方式,种群之间的空间结构可以通过进化机制影响物种的相互作用。但是,大多数元社区理论都假设人口不会进化。在这里,我们评估了进化是如何在元社区框架所体现的多尺度和多物种环境中塑造本地物种共存和排斥的。总的来说,联合生态进化模型中的共存要求低到中等的扩散速度,这可以促进区域物种和遗传多样性的维持。这些条件支持一系列改变物种共存模式的关键机制,包括局部适应,基因存储效应,遗传拯救效应,空间遗传补贴和元社区进化。多物种扩展表明,根据相关性的大小和方向以及适应性取舍的形状,相关选择可以进一步改变种间相互作用的结果。我们建议,不断发展的元社区观点有可能通过纳入表征的遗传和物种多样性来产生有关社区结构和功能的新颖预测。自然社区。通过采用这种A视角,我们试图促进对进化和元社区动力学之间相互作用的理解。

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