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一种基于回归的强大方法,用于在杂种基因组中进行隔离混合映射。

A powerful regression-based method for admixture mapping of isolation across the genome of hybrids.

作者信息

Gompert Zachariah, Buerkle C Alex

机构信息

Department of Botany and Program in Ecology, University of Wyoming, Laramie, 82071, USA.

出版信息

Mol Ecol. 2009 Mar;18(6):1207-24. doi: 10.1111/j.1365-294X.2009.04098.x. Epub 2009 Feb 20.

Abstract

We propose a novel method that uses natural admixture between divergent lineages (hybridization) to investigate the genetic architecture of reproductive isolation and adaptive introgression. Our method employs multinomial regression to estimate genomic clines and to quantify introgression for individual loci relative to the genomic background (clines in genotype frequency along a genomic admixture gradient). Loci with patterns of introgression that deviate significantly from null expectations based on the remainder of the genome are potentially subject to selection and thus of interest to understanding adaptation and the evolution of reproductive isolation. Using simulations, we show that different forms of selection modify these genomic clines in predictable ways and that our method has good power to detect moderate to strong selection for multiple forms of selection. Using individual-based simulations, we demonstrate that our method generally has a low false positive rate, except when genetic drift is particularly pronounced (e.g. low population size, low migration rates from parental populations, and substantial time since initial admixture). Additional individual-based simulations reveal that moderate selection against heterozygotes can be detected as much as 50 cm away from the focal locus directly experiencing selection, but is not detected at unlinked loci. Finally, we apply our analytical method to previously published data sets from a mouse (Mus musculus and M. domesticus) and two sunflower (Helianthus petiolaris and H. annuus) hybrid zones. This method should be applicable to numerous species that are currently the focus of research in evolution and ecology and should help bring about new insights regarding the processes underlying the origin and maintenance of biological diversity.

摘要

我们提出了一种新方法,该方法利用不同谱系之间的自然混合(杂交)来研究生殖隔离和适应性渐渗的遗传结构。我们的方法采用多项回归来估计基因组渐变群,并相对于基因组背景(沿基因组混合梯度的基因型频率渐变群)量化单个基因座的渐渗。其渐渗模式与基于基因组其余部分的零期望有显著偏差的基因座可能受到选择作用,因此对于理解适应性和生殖隔离的进化具有重要意义。通过模拟,我们表明不同形式的选择会以可预测的方式改变这些基因组渐变群,并且我们的方法对于检测多种形式选择的中度至强选择具有良好的功效。通过基于个体的模拟,我们证明我们的方法通常具有较低的假阳性率,除非遗传漂变特别明显(例如种群规模小、来自亲本种群的迁移率低以及自初始混合以来的时间较长)。额外的基于个体的模拟表明,针对杂合子的中度选择在距离直接经历选择的焦点基因座多达50厘米处可以被检测到,但在不连锁的基因座上则无法检测到。最后,我们将我们的分析方法应用于先前发表的来自小鼠(小家鼠和家鼠)以及两个向日葵(叶柄向日葵和向日葵)杂交区的数据集。该方法应该适用于目前进化和生态学研究重点关注的众多物种,并应有助于带来有关生物多样性起源和维持背后过程的新见解。

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