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A crucial step toward realism: responses to climate change from an evolving metacommunity perspective

机译:迈向现实主义的关键一步:从不断发展的元社区视角应对气候变化

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摘要

We need to understand joint ecological and evolutionary responses to climate change to predict future threats to biological diversity. The ‘evolving metacommunity’ framework emphasizes that interactions between ecological and evolutionary mechanisms at both local and regional scales will drive community dynamics during climate change. Theory suggests that ecological and evolutionary dynamics often interact to produce outcomes different from those predicted based on either mechanism alone. We highlight two of these dynamics: (i) species interactions prevent adaptation of nonresident species to new niches and (ii) resident species adapt to changing climates and thereby prevent colonization by nonresident species. The rate of environmental change, level of genetic variation, source-sink structure, and dispersal rates mediate between these potential outcomes. Future models should evaluate multiple species, species interactions other than competition, and multiple traits. Future experiments should manipulate factors such as genetic variation and dispersal to determine their joint effects on responses to climate change. Currently, we know much more about how climates will change across the globe than about how species will respond to these changes despite the profound effects these changes will have on global biological diversity. Integrating evolving metacommunity perspectives into climate change biology should produce more accurate predictions about future changes to species distributions and extinction threats.
机译:我们需要了解对气候变化的共同生态和进化反应,以预测未来对生物多样性的威胁。 “不断发展的元社区”框架强调,在地方和区域范围内,生态机制与进化机制之间的相互作用将推动气候变化期间的社区动态。理论表明,生态动力学和进化动力学经常相互作用,以产生与仅基于任何一种机制预测的结果不同的结果。我们着重介绍了其中的两个动态:(i)物种相互作用阻止非居民物种适应新的生态位;(ii)居民物种适应气候变化,从而防止非居民物种定居。在这些潜在结果之间介导了环境变化的速率,遗传变异的水平,源库结构和扩散速率。未来的模型应该评估多种物种,竞争以外的物种相互作用以及多种性状。未来的实验应操纵遗传变异和扩散等因素,以确定它们对气候变化响应的共同影响。目前,尽管气候变化将对全球生物多样性产生深远影响,但我们对气候变化的了解远不止于物种对这些变化的反应方式。将不断发展的元社区观点纳入气候变化生物学应该可以对物种分布和灭绝威胁的未来变化做出更准确的预测。

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