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在不断变化的世界中的生态进化动态。

Eco-evolutionary dynamics in a changing world.

机构信息

Department of Biosciences, University of Helsinki, Finland.

出版信息

Ann N Y Acad Sci. 2012 Feb;1249:1-17. doi: 10.1111/j.1749-6632.2011.06419.x. Epub 2012 Feb 15.

Abstract

Fast evolutionary changes are common in natural populations, though episodes of rapid evolution do not generally last for long and are typically associated with changing environments. During such periods, evolutionary dynamics may influence ecological population dynamics and vice versa. This review is concerned with spatial eco-evolutionary dynamics with a focus on the occurrence of species in marginal habitats and on metapopulations inhabiting heterogeneous environments. Dispersal and gene flow are key processes in both cases, linking demographic and evolutionary dynamics to each other, facilitating but also constraining the expansion of the current niche and the geographical range of species and determining the spatial scale and pattern of adaptation in heterogeneous environments. An eco-evolutionary metapopulation model helps explain the contrasting responses of species to habitat loss and fragmentation. Eco-evolutionary dynamics may facilitate the persistence of species in changing environments, but typically the evolutionary response only partially compensates for the negative ecological consequences of adverse environmental changes.

摘要

快速进化变化在自然种群中很常见,尽管快速进化的事件通常不会持续很长时间,并且通常与环境变化有关。在这些时期,进化动态可能会影响生态种群动态,反之亦然。本综述关注的是空间生态进化动态,重点是边缘生境中物种的出现和栖息在异质环境中的复合种群。扩散和基因流是这两种情况的关键过程,将人口动态和进化动态联系在一起,促进但也限制了当前生态位和物种地理范围的扩展,并决定了异质环境中适应的空间尺度和模式。一个生态进化复合种群模型有助于解释物种对生境丧失和破碎化的反应差异。生态进化动态可能有助于物种在不断变化的环境中生存,但通常进化反应只能部分补偿不利环境变化对生态的负面影响。

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