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群体在长时间尺度的隔离与连接循环中遗传多样性的周转与积累。

Turnover and accumulation of genetic diversity across large time-scale cycles of isolation and connection of populations.

作者信息

Alcala Nicolas, Vuilleumier Séverine

机构信息

Department of Ecology and Evolution, University of Lausanne, Biophore, 1015 Lausanne, Switzerland

Department of Ecology and Evolution, University of Lausanne, Biophore, 1015 Lausanne, Switzerland Institute of Microbiology, Lausanne University Hospital and University of Lausanne, CH-1011 Lausanne, Switzerland.

出版信息

Proc Biol Sci. 2014 Nov 7;281(1794):20141369. doi: 10.1098/rspb.2014.1369.

Abstract

Major climatic and geological events but also population history (secondary contacts) have generated cycles of population isolation and connection of long and short periods. Recent empirical and theoretical studies suggest that fast evolutionary processes might be triggered by such events, as commonly illustrated in ecology by the adaptive radiation of cichlid fishes (isolation and reconnection of lakes and watersheds) and in epidemiology by the fast adaptation of the influenza virus (isolation and reconnection in hosts). We test whether cyclic population isolation and connection provide the raw material (standing genetic variation) for species evolution and diversification. Our analytical results demonstrate that population isolation and connection can provide, to populations, a high excess of genetic diversity compared with what is expected at equilibrium. This excess is either cyclic (high allele turnover) or cumulates with time depending on the duration of the isolation and the connection periods and the mutation rate. We show that diversification rates of animal clades are associated with specific periods of climatic cycles in the Quaternary. We finally discuss the importance of our results for macroevolutionary patterns and for the inference of population history from genomic data.

摘要

重大的气候和地质事件以及种群历史(二次接触)产生了长短周期交替的种群隔离和连接循环。近期的实证研究和理论研究表明,此类事件可能引发快速的进化过程,这在生态学中常见于丽鱼科鱼类的适应性辐射(湖泊和流域的隔离与重新连接),在流行病学中则表现为流感病毒的快速适应(宿主内的隔离与重新连接)。我们检验周期性的种群隔离和连接是否为物种进化和多样化提供了原材料(现存遗传变异)。我们的分析结果表明,与平衡状态下预期的情况相比,种群隔离和连接能够为种群提供大量的遗传多样性过剩。这种过剩要么是周期性的(高等位基因周转率),要么会随着时间累积,这取决于隔离期和连接期的时长以及突变率。我们表明,动物类群的多样化速率与第四纪气候周期的特定时期相关。我们最后讨论了我们的结果对于宏观进化模式以及从基因组数据推断种群历史的重要性。

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