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首页> 外文期刊>Genome research >Extensive recombination rate variation in the house mouse species complex inferred from genetic linkage maps.
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Extensive recombination rate variation in the house mouse species complex inferred from genetic linkage maps.

机译:从遗传连锁图谱推断,家鼠物种复合物中的广泛重组率变化。

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The rate of recombination is a key genomic parameter that displays considerable variation among taxa. Species comparisons have demonstrated that the rate of evolution in recombination rate is strongly dependent on the physical scale of measurement. Individual recombination hotspots are poorly conserved among closely related taxa, whereas genomic-scale recombination rate variation bears a strong signature of phylogenetic history. In contrast, the mode and tempo of evolution in recombination rates measured on intermediate physical scales is poorly understood. Here, we conduct a detailed statistical comparison between two whole-genome F genetic linkage maps constructed from experimental intercrosses between closely related house mouse subspecies (Mus musculus). Our two maps profile a common wild-derived inbred strain of M. m. domesticus crossed to distinct wild-derived inbred strains representative of two other house mouse subspecies, M. m. castaneus and M. m. musculus. We identify numerous orthologous genomic regions with significant map length differences between these two crosses. Because the genomes of these recently diverged house mice are highly collinear, observed differences in map length (centimorgans) are suggestive of variation in broadscale recombination rate (centimorgans per megabase) within M. musculus. Collectively, these divergent intervals span 19% of the house mouse genome, disproportionately aggregating on the X chromosome. In addition, we uncover strong statistical evidence for a large effect, sex-linked, site-specific modifier of recombination rate segregating within M. musculus. Our findings reveal considerable variation in the megabase-scale recombination landscape among recently diverged taxa and underscore the continued importance of genetic linkage maps in the post-genome era.
机译:重组率是关键的基因组参数,在分类群之间显示出相当大的差异。物种比较表明,重组速率的进化速率在很大程度上取决于测量的物理规模。在密切相关的分类单元中,单个重组热点的保守性较差,而基因组规模的重组率变化具有系统发生史的强烈特征。相反,人们对在中等物理规模上测得的重组速率的演化方式和速度知之甚少。在这里,我们进行了两个全基因组F基因连锁图谱之间的详细统计比较,该图谱由紧密相关的家鼠亚种(小家鼠)之间的实验杂交构建而成。我们的两张图描述了一种常见的野生产自交系的M. m.。家蝇与代表另外两个家鼠亚种M.m.的不同的野生自交系杂交。卡斯塔涅斯和米小肌肉。我们确定了许多直系基因组区域,这两个交叉之间的图谱长度差异明显。由于这些最近分化的家鼠的基因组是高度共线的,因此观察到的图谱长度(厘摩器官)差异暗示了小家鼠体内的大规模重组率(每兆碱基的厘摩器官)发生变化。这些不同的间隔共同占据了家鼠基因组的19%,在X染色体上不成比例地聚集。此外,我们发现了强有力的统计证据,证明了小家鼠体内重组率高的,性别相关的,位点特异性的重组率修饰剂。我们的研究结果表明,最近分化的生物分类之间在兆碱基尺度的重组格局中存在着很大的差异,并强调了遗传连锁图谱在后基因组时代的持续重要性。

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