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Evolution of replication origins in vertebrate genomes: rapid turnover despite selective constraints

机译:脊椎动物基因组中复制起点的演变:尽管有选择性限制但快速周转

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摘要

The replication program of vertebrate genomes is driven by the chromosomal distribution and timing of activation of tens of thousands of replication origins. Genome-wide studies have shown the association of origins with promoters and CpG islands, and their enrichment in G-quadruplex motifs (G4). However, the genetic determinants driving their activity remain poorly understood. To gain insight on the constraints operating on origins, we conducted the first evolutionary comparison of origins across vertebrates. We generated a genome-wide map of chicken origins (the first of a bird genome), and performed a comparison with human and mouse maps. The analysis of intra-species polymorphism revealed a strong depletion of genetic diversity at the core of replication initiation loci. This depletion is not linked to the presence of G4 motifs, promoters or CpG islands. In contrast, we show that origins experienced a rapid turnover during vertebrate evolution, since pairwise comparisons of origin maps revealed that <24% of them are conserved among vertebrates. This study unravels the existence of a novel determinant of origins, the precise functional role of which remains to be determined. Despite the importance of replication initiation for the fitness of organisms, the distribution of origins along vertebrate chromosomes is highly flexible.
机译:脊椎动物基因组的复制程序是由成千上万个复制起点的染色体分布和激活时间决定的。全基因组研究表明,起源与启动子和CpG岛的关联,以及它们在G-四链体基序(G4)中的富集。但是,驱动其活动的遗传决定因素仍然知之甚少。为了深入了解对起源的限制,我们对整个脊椎动物的起源进行了首次进化比较。我们生成了鸡起源的全基因组图谱(鸟类基因组的第一个图谱),并与人和小鼠图谱进行了比较。物种内多态性的分析显示,在复制起始基因座的核心处遗传多样性的严重消耗。这种消耗与G4基序,启动子或CpG岛的存在无关。相比之下,我们表明起源在脊椎动物进化过程中经历了快速周转,因为起源图的成对比较显示,其中<24%在脊椎动物中是保守的。这项研究揭示了一个新的起源决定因素的存在,其确切的功能作用尚待确定。尽管复制起始对于生物体的适应性很重要,但沿脊椎动物染色体的起源分布却非常灵活。

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