首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The Red Queen model of recombination hot-spot evolution: a theoretical investigation
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The Red Queen model of recombination hot-spot evolution: a theoretical investigation

机译:重组热点演化的红色女王模型:理论调查

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In humans and many other species, recombination events cluster in narrow and short-lived hot spots distributed across the genome, whose location is determined by the Zn-finger protein PRDM9. To explain these fast evolutionary dynamics, an intra-genomic Red Queen model has been proposed, based on the interplay between two antagonistic forces: biased gene conversion, mediated by double-strand breaks, resulting in hot-spot extinction, followed by positive selection favouring new PRDM9 alleles recognizing new sequence motifs. Thus far, however, this Red Queen model has not been formalized as a quantitative population-genetic model, fully accounting for the intricate interplay between biased gene conversion, mutation, selection, demography and genetic diversity at the PRDM9 locus. Here, we explore the population genetics of the Red Queen model of recombination. A Wright-Fisher simulator was implemented, allowing exploration of the behaviour of the model (mean equilibrium recombination rate, diversity at the PRDM9 locus or turnover rate) as a function of the parameters (effective population size, mutation and erosion rates). In a second step, analytical results based on self-consistent mean-field approximations were derived, reproducing the scaling relations observed in the simulations. Empirical fit of the model to current data from the mouse suggests both a high mutation rate at PRDM9 and strong biased gene conversion on its targets.
机译:在人类和许多其他物种中,重组事件在分布在基因组上分布的狭窄和短寿命的热点,其位置由Zn-Finger蛋白PRDM9确定。为了解释这些快速进化动态,已经提出了一种基于两个拮抗力的相互作用的基因组内模型:偏置基因转化,由双链断裂介导的,导致热点消失,然后进行阳性选择偏爱新的PRDM9等位基因识别新序列图案。然而,到目前为止,这种红色女王模型尚未被形式化为定量人口遗传模型,完全占PRDM9基因座的偏置基因转化,突变,选择,人口统计学和遗传多样性之间的复杂相互作用。在这里,我们探讨了红色女王重组模型的人口遗传学。实施了赖特 - 费利夫模拟器,允许探索模型的行为(平均均衡重组率,PRDM9基因座或周转率的多样性)作为参数的函数(有效种群大小,突变和侵蚀率)。在第二步中,导出了基于自我常见平均场近似的分析结果,再现在模拟中观察到的缩放关系。模型对来自小鼠的当前数据的经验拟合表明,PRDM9的高突变率和其靶标的强偏置基因转化。

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