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Bulk pollen sequencing reveals rapid evolution of segregation distortion in the male germline of Arabidopsis hybrids

机译:大量花粉测序揭示了拟南芥杂种雄性种系中分离畸变的快速演变

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摘要

Genes that do not segregate in heterozygotes at Mendelian ratios are a potentially important evolutionary force in natural populations. Although the impacts of segregation distortion are widely appreciated, we have little quantitative understanding about how often these loci arise and fix within lineages. Here, we develop a statistical approach for detecting segregation distorting genes from the comprehensive comparison of whole genome sequence data obtained from bulk gamete versus somatic tissues. Our approach enables estimation of map positions and confidence intervals, and quantification of effect sizes of segregation distorters. We apply our method to the pollen of two interspecific F1 hybrids of Arabidopsis lyrata and A. halleri and we identify three loci across eight chromosomes showing significant evidence of segregation distortion in both pollen samples. Based on this, we estimate that novel segregation distortion elements evolve and achieve high frequencies within lineages at a rate of approximately one per 244,000 years. Furthermore, we estimate that haploid‐acting segregation distortion may contribute between 10% and 30% of reduced pollen viability in F1 individuals. Our results indicate haploid acting factors evolve rapidly and dramatically influence segregation in F1 hybrid individuals.
机译:在孟德尔比率下未分离到杂合子中的基因是自然种群中潜在的重要进化力。尽管人们普遍认识到偏析变形的影响,但我们对这些位点在谱系中出现和固定的频率了解甚少。在这里,我们开发了一种统计方法,可以从从大量配子与体细胞组织获得的全基因组序列数据的全面比较中,检测出分离扭曲基因。我们的方法可以估计地图的位置和置信区间,并量化分离失真的影响大小。我们将我们的方法应用于拟南芥和A. halleri的两个种间F1杂种的花粉,我们在八个染色体上鉴定了三个基因座,显示出两个花粉样品中分离畸变的重要证据。基于此,我们估计新颖的偏析畸变元素会以大约每244,000年1个的速率进化并在谱系内达到高频。此外,我们估计单倍体作用的分离畸变可能在F1个体中降低了花粉活力的10%到30%之间。我们的结果表明,单倍体作用因子迅速发展,并显着影响F1杂种个体的分离。

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