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阿拉巴马长柱芥种群近期对自交亲和性的选择。

Recent selection for self-compatibility in a population of Leavenworthia alabamica.

作者信息

Herman Adam C, Schoen Daniel J

机构信息

Department of Biology, McGill University, Montreal, Quebec, H3A 1B1, Canada.

Current Address: Department of Plant Biology, University of Minnesota, St. Paul, Minnesota, 55108.

出版信息

Evolution. 2016 Jun;70(6):1212-24. doi: 10.1111/evo.12937. Epub 2016 May 22.

Abstract

The evolution of self-compatibility (SC) is the first step in the evolutionary transition in plants from outcrossing enforced by self-incompatibility (SI) to self-fertilization. In the Brassicaceae, SI is controlled by alleles of two tightly linked genes at the S-locus. Despite permitting inbreeding, mutations at the S-locus leading to SC may be selected if they provide reproductive assurance and/or gain a transmission advantage in a population when SC plants self- and outcross. Positive selection can leave a genomic signature in the regions physically linked to the focus of selection when selection has occurred recently. From an SC population of Leavenworthia alabamica with a known nonfunctional mutation at the S-locus, we collected sequence data from a ∼690 Kb region surrounding the S-locus, as well as from regions not linked to the S-locus. To test for recent positive selection acting at the S-locus, we examined polymorphism and the site-frequency spectra. Using forward simulations, we demonstrate that recent selection of the strength expected for SC at a locus formerly under balancing selection can generate patterns similar to those seen in our empirical data.

摘要

自交亲和性(SC)的进化是植物从由自交不亲和性(SI)强制异交到自花受精的进化转变的第一步。在十字花科中,SI由位于S位点的两个紧密连锁基因的等位基因控制。尽管允许近亲繁殖,但如果S位点的突变能提供繁殖保障和/或在SC植物自交和异交时在种群中获得传播优势,那么导致SC的S位点突变可能会被选择。当最近发生选择时,正选择会在与选择焦点物理连锁的区域留下基因组特征。从阿拉巴马州莱文沃思草的一个SC种群中,我们在S位点有一个已知的无功能突变,我们从围绕S位点的约690 Kb区域以及与S位点不连锁的区域收集了序列数据。为了测试最近在S位点起作用的正选择,我们检查了多态性和位点频率谱。通过正向模拟,我们证明了在一个以前处于平衡选择的位点上,最近对SC预期强度的选择可以产生与我们经验数据中看到的模式相似的模式。

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