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Recombination Rate Variation and Infrequent Sex Influence Genetic Diversity in Chlamydomonas reinhardtii

机译:Reinhardtii中的重组率变异和不常见的性别影响遗传多样性

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Recombination confers a major evolutionary advantage by breaking up linkage disequilibrium between harmful and beneficial mutations, thereby facilitating selection. However, in species that are only periodically sexual, such as many microbial eukaryotes, the realized rate of recombination is also affected by the frequency of sex, meaning that infrequent sex can increase the effects of selection at linked sites despite high recombination rates. Despite this, the rate of sex of most facultatively sexual species is unknown. Here, we use genomewide patterns of linkage disequilibrium to infer fine-scale recombination rate variation in the genome of the facultatively sexual green alga Chlamydomonas reinhardtii. We observe recombination rate variation of up to two orders of magnitude and find evidence of recombination hotspots across the genome. Recombination rate is highest flanking genes, consistent with trends observed in other nonmammalian organisms, though intergenic recombination rates vary by intergenic tract length. We also find a positive relationship between nucleotide diversity and physical recombination rate, suggesting a widespread influence of selection at linked sites in the genome. Finally, we use estimates of the effective rate of recombination to calculate the rate of sex that occurs in natural populations, estimating a sexual cycle roughly every 840 generations. We argue that the relatively infrequent rate of sex and large effective population size creates a population genetic environment that increases the influence of selection on linked sites across the genome.
机译:重组通过破坏有害和有益突变之间的连杆不平衡,从而促进选择来赋予主要的进化优势。然而,在只定期性的物种中,例如许多微生物真核生物,所以实现的重组率也受到性频率的影响,这意味着尽管高重组率,但缺乏频繁的性别可能会增加联系地点的选择的影响。尽管如此,最易患性物种的性别率未知。在此,我们使用联动不平衡的基因面模式,以推断出易性性绿藻衣原体Reinhardtii的基因组中的细尺寸重组率变化。我们观察到最多两个数量级的重组率变化,并找到整个基因组的重组热点的证据。重组率是最高的侧翼基因,与其他非含有生物体观察到的趋势一致,尽管代轴重组率因非基因槽长度而异。我们还发现核苷酸多样性和物理重组率之间的阳性关系,表明在基因组中的链接位点对选择的广泛影响。最后,我们利用重组有效率的估计来计算自然群体中发生的性行为,大致每840代估计性循环。我们认为,相对罕见的性别和大有效人口大小产生了群体遗传环境,这些环境增加了对基因组中的联系位点的影响。

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