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自然环境中种群扩张的遗传特征:克隆体如何实现跨越式发展。

Genetic signatures of a range expansion in natura: when clones play leapfrog.

作者信息

Becheler Ronan, Xhaard Constance, Klein Etienne K, Hayden Katherine J, Frey Pascal, De Mita Stéphane, Halkett Fabien

机构信息

UMR IAM INRA Université de Lorraine 54000 Nancy France.

UMR IAMINRA Université de Lorraine54000 Nancy France; Present address: INSERM U1018, CESP, Univ. Paris-Sud UVSQ, Université Paris-Saclay Institut Gustave Roussy Villejuif France.

出版信息

Ecol Evol. 2016 Aug 26;6(18):6625-6632. doi: 10.1002/ece3.2392. eCollection 2016 Sep.

Abstract

The genetic consequences of range expansions have generally been investigated at wide geographical and temporal scales, long after the colonization event. A unique ecological system enabled us to both monitor the colonization dynamics and decipher the genetic footprints of expansion over a very short time period. Each year an epidemic of the poplar rust () expands clonally and linearly along the Durance River, in the Alps. The colonization dynamics observed in 2004 showed two phases with different genetic outcomes. Upstream, fast colonization maintained high genetic diversity. Downstream, the colonization wave progressively faltered, diversity eroded, and differentiation increased, as expected under recurrent founder events. In line with the high dispersal abilities of rust pathogens, we provide evidence for leapfrog dispersal of clones. Our results thus emphasize the importance of colonization dynamics in shaping spatial genetic structure in the face of high gene flow.

摘要

一般来说,在范围扩张事件发生很久之后,才会在广泛的地理和时间尺度上研究其遗传后果。一个独特的生态系统使我们能够在很短的时间内监测定殖动态并解读扩张的遗传印记。每年,杨树锈病在阿尔卑斯山的迪朗斯河沿线以克隆方式线性传播。2004年观察到的定殖动态显示出两个具有不同遗传结果的阶段。在河流上游,快速定殖维持了较高的遗传多样性。在下游,定殖波逐渐停滞,多样性受到侵蚀,分化加剧,正如在反复出现的奠基者事件中预期的那样。鉴于锈病病原体具有较高的传播能力,我们提供了克隆体蛙跳式传播的证据。因此,我们的结果强调了在高基因流情况下定殖动态对塑造空间遗传结构的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/734b/5058533/2ae54133fd2f/ECE3-6-6625-g001.jpg

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