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气候变化与物种分布区边缘的进化适应。

Climate change and evolutionary adaptations at species' range margins.

机构信息

Department of Biology, University of York, YO10 5DD, United Kingdom.

出版信息

Annu Rev Entomol. 2011;56:143-59. doi: 10.1146/annurev-ento-120709-144746.

Abstract

During recent climate warming, many insect species have shifted their ranges to higher latitudes and altitudes. These expansions mirror those that occurred after the Last Glacial Maximum when species expanded from their ice age refugia. Postglacial range expansions have resulted in clines in genetic diversity across present-day distributions, with a reduction in genetic diversity observed in a wide range of insect taxa as one moves from the historical distribution core to the current range margin. Evolutionary increases in dispersal at expanding range boundaries are commonly observed in virtually all insects that have been studied, suggesting a positive feedback between range expansion and the evolution of traits that accelerate range expansion. The ubiquity of this phenomenon suggests that it is likely to be an important determinant of range changes. A better understanding of the extent and speed of adaptation will be crucial to the responses of biodiversity and ecosystems to climate change.

摘要

在最近的气候变暖过程中,许多昆虫物种已经向高纬度和高海拔地区迁徙。这些扩张与末次冰期后物种从冰期避难所扩张的情况相吻合。冰消期的范围扩张导致了现今分布范围内遗传多样性的梯度变化,随着从历史分布核心向当前分布范围边缘的移动,广泛的昆虫类群的遗传多样性减少。在几乎所有研究过的昆虫中,都普遍观察到在扩展的范围边界处扩散能力的进化增加,这表明范围扩张和加速范围扩张的特征的进化之间存在正反馈。这种现象的普遍性表明,它很可能是范围变化的一个重要决定因素。更好地了解适应的程度和速度对于生物多样性和生态系统对气候变化的反应至关重要。

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