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范围收缩和范围转移对分子多样性的影响。

Consequences of range contractions and range shifts on molecular diversity.

机构信息

Computational and Molecular Population Genetics Lab, Institute of Ecology and Evolution, University of Bern, Berne, Switzerland.

出版信息

Mol Biol Evol. 2012 Jan;29(1):207-18. doi: 10.1093/molbev/msr187. Epub 2011 Jul 21.

Abstract

Due to past and current climatic changes, range contractions and range shifts are essential stages in the history of a species. However, unlike range expansions, the molecular consequences of these processes have been little investigated. In order to fill this gap, we simulated patterns of molecular diversity within and between populations for various types of range contractions and range shifts. We show that range contractions tend to decrease genetic diversity as compared with population with stable ranges but quite counterintuitively fast range contractions preserve higher levels of diversity and induce lower levels of genetic differentiation among refuge areas than slow contractions. Contrastingly, fast range shifts lead to lower levels of diversity than slow range shifts. At odds with our expectations, we find that species actively migrating toward refuge areas can only preserve higher levels of diversity in refugia if the contraction is rapid. Under slow range contraction or slow range shift, active migration toward refugia lead to a larger loss of diversity as compared with scenarios with isotropic migration and may thus not be a good evolutionary strategy. These results suggest that the levels of diversity preserved after a climate change both within and between refuge areas will not only depend on the dispersal abilities of a species but also on the speed of the change. It also implies that a given episode of climatic change will impact differently species with different generation times.

摘要

由于过去和当前的气候变化,范围收缩和范围转移是物种历史上的重要阶段。然而,与范围扩张不同,这些过程的分子后果还没有得到广泛的研究。为了填补这一空白,我们模拟了不同类型的范围收缩和范围转移情况下种群内和种群间的分子多样性模式。我们表明,与范围稳定的种群相比,范围收缩往往会降低遗传多样性,但令人惊讶的是,快速的范围收缩比缓慢的范围收缩更能保留更高水平的多样性,并在避难所之间引起更低水平的遗传分化。相反,快速的范围转移会导致比缓慢的范围转移更低的多样性水平。与我们的预期相反,如果收缩迅速,积极向避难所迁移的物种只能在避难所中保留更高水平的多样性。在范围缓慢收缩或范围缓慢转移的情况下,与各向同性迁移的情景相比,积极向避难所迁移会导致更大的多样性损失,因此可能不是一种良好的进化策略。这些结果表明,气候变化后在避难所内和之间保留的多样性水平不仅取决于物种的扩散能力,还取决于变化的速度。这也意味着,不同世代时间的物种将受到不同的气候变化的影响。

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