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大型溞自然种群在强选择压力下的时间遗传稳定性。

Temporal genetic stability in natural populations of the waterflea Daphnia magna in response to strong selection pressure.

作者信息

Orsini Luisa, Marshall Hollie, Cuenca Cambronero Maria, Chaturvedi Anurag, Thomas Kelley W, Pfrender Michael E, Spanier Katina I, De Meester Luc

机构信息

Environmental Genomics Group, School of Biosciences, the University of Birmingham, Birmingham, B15 2TT, UK.

Laboratory of Aquatic Ecology, Evolution and Conservation, KU Leuven - University of Leuven, Ch. Deberiotstraat 32, 3000, Leuven, Belgium.

出版信息

Mol Ecol. 2016 Dec;25(24):6024-6038. doi: 10.1111/mec.13907. Epub 2016 Nov 25.

Abstract

Studies monitoring changes in genetic diversity and composition through time allow a unique understanding of evolutionary dynamics and persistence of natural populations. However, such studies are often limited to species with short generation times that can be propagated in the laboratory or few exceptional cases in the wild. Species that produce dormant stages provide powerful models for the reconstruction of evolutionary dynamics in the natural environment. A remaining open question is to what extent dormant egg banks are an unbiased representation of populations and hence of the species' evolutionary potential, especially in the presence of strong environmental selection. We address this key question using the water flea Daphnia magna, which produces dormant stages that accumulate in biological archives over time. We assess temporal genetic stability in three biological archives, previously used in resurrection ecology studies showing adaptive evolutionary responses to rapid environmental change. We show that neutral genetic diversity does not decline with the age of the population and it is maintained in the presence of strong selection. In addition, by comparing temporal genetic stability in hatched and unhatched populations from the same biological archive, we show that dormant egg banks can be consulted to obtain a reliable measure of genetic diversity over time, at least in the multidecadal time frame studied here. The stability of neutral genetic diversity through time is likely mediated by the buffering effect of the resting egg bank.

摘要

通过时间监测遗传多样性和组成变化的研究,能让我们对自然种群的进化动态和持久性有独特的理解。然而,这类研究往往局限于那些在实验室中能短时间繁殖的物种,或者野外少数特殊的案例。产生休眠阶段的物种为重建自然环境中的进化动态提供了有力的模型。一个悬而未决的问题是,休眠卵库在多大程度上能无偏差地代表种群,进而代表物种的进化潜力,尤其是在存在强烈环境选择的情况下。我们利用大型溞来解决这个关键问题,大型溞会产生休眠阶段,随着时间的推移这些休眠阶段会积累在生物档案中。我们评估了三个生物档案中的时间遗传稳定性,这些生物档案之前用于复活生态学研究,显示了对快速环境变化的适应性进化反应。我们表明,中性遗传多样性不会随着种群年龄的增长而下降,并且在存在强烈选择的情况下仍能保持。此外,通过比较来自同一生物档案的孵化和未孵化种群的时间遗传稳定性,我们表明至少在本文研究的数十年时间框架内,可以参考休眠卵库来获得随时间变化的遗传多样性的可靠度量。中性遗传多样性随时间的稳定性可能是由休眠卵库的缓冲作用介导的。

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