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监测对环境变化的适应性遗传反应。

Monitoring adaptive genetic responses to environmental change.

机构信息

Department of Bioscience, Aarhus University, Ny Munkegade 114, Aarhus C, Denmark.

出版信息

Mol Ecol. 2012 Mar;21(6):1311-29. doi: 10.1111/j.1365-294X.2011.05463.x. Epub 2012 Jan 23.

DOI:10.1111/j.1365-294X.2011.05463.x
PMID:22269082
Abstract

Widespread environmental changes including climate change, selective harvesting and landscape alterations now greatly affect selection regimes for most organisms. How animals and plants can adapt to these altered environments via contemporary evolution is thus of strong interest. We discuss how to use genetic monitoring to study adaptive responses via repeated analysis of the same populations over time, distinguishing between phenotypic and molecular genetics approaches. After describing monitoring designs, we develop explicit criteria for demonstrating adaptive responses, which include testing for selection and establishing clear links between genetic and environmental change. We then review a few exemplary studies that explore adaptive responses to climate change in Drosophila, selective responses to hunting and fishing, and contemporary evolution in Daphnia using resurrected resting eggs. We further review a broader set of 44 studies to assess how well they meet the proposed criteria, and conclude that only 23% fulfill all criteria. Approximately half (43%) of these studies failed to rule out the alternative hypothesis of replacement by a different, better-adapted population. Likewise, 34% of the studies based on phenotypic variation did not test for selection as opposed to drift. These shortcomings can be addressed via improved experimental designs and statistical testing. We foresee monitoring of adaptive responses as a future valuable tool in conservation biology, for identifying populations unable to evolve at sufficiently high rates and for identifying possible donor populations for genetic rescue. Technological advances will further augment the realization of this potential, especially next-generation sequencing technologies that allow for monitoring at the level of whole genomes.

摘要

广泛的环境变化,包括气候变化、选择性收获和景观改变,现在极大地影响了大多数生物的选择机制。因此,动物和植物如何通过当代进化来适应这些变化的环境,这是一个非常有趣的问题。我们讨论了如何通过对同一群体在不同时间的重复分析,利用遗传监测来研究适应性反应,区分表型和分子遗传学方法。在描述监测设计之后,我们提出了明确的标准来证明适应性反应,包括检验选择和在遗传和环境变化之间建立明确的联系。然后,我们回顾了一些示例研究,这些研究探索了果蝇对气候变化的适应性反应、对狩猎和捕鱼的选择性反应以及使用复活休眠卵的水蚤的当代进化。我们进一步回顾了更广泛的 44 项研究,以评估它们满足所提出标准的程度,并得出结论,只有 23%的研究满足所有标准。这些研究中有将近一半(43%)没有排除由不同、适应性更强的群体替代的替代假设。同样,基于表型变异的研究中有 34%没有检验选择,而是检验了漂变。这些缺点可以通过改进实验设计和统计检验来解决。我们预计,监测适应性反应将成为保护生物学中的一种未来有价值的工具,用于识别无法以足够高的速度进化的种群,并识别可能用于遗传拯救的供体种群。技术进步将进一步增强这一潜力的实现,特别是允许在全基因组水平进行监测的下一代测序技术。

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