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Genetic Variation in Human DNA Replication Timing

机译:人类DNA复制时间的遗传变异

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Genomic DNA replicates in a choreographed temporal order that impacts the distribution of mutations along the genome. We show here that DNA replication timing is shaped by genetic polymorphisms that act in cis upon megabase-scale DNA segments. In genome sequences from proliferating cells, read depth along chromosomes reflected DNA replication activity in those cells. We used this relationship to analyze variation in replication timing among 161 individuals sequenced by the 1000 Genomes Project. Genome-wide association of replication timing with genetic variation identified 16 loci at which inherited alleles associate with replication timing.Wecall these ''replication timing quantitative trait loci'' (rtQTLs). rtQTLs involved the differential use of replication origins, exhibited allele-specific effects on replication timing, and associated with gene expression variation at megabase scales. Our results show replication timing to be shaped by genetic polymorphism and identify a means by which inherited polymorphism regulates the mutability of nearby sequences.
机译:基因组DNA按编排的时间顺序复制,这会影响突变沿基因组的分布。我们在这里表明,DNA复制的时机是由顺着兆碱基规模DNA片段的顺式作用的遗传多态性决定的。在来自增殖细胞的基因组序列中,沿染色体的读取深度反映了这些细胞中的DNA复制活性。我们使用这种关系来分析由1000个基因组计划测序的161个个体之间复制时间的变化。复制时机与遗传变异的全基因组关联确定了16个基因座,在这些基因座上,遗传等位基因与复制时机相关联。 rtQTL涉及复制起点的差异使用,在复制时机上表现出等位基因特异性效应,并与兆碱基规模的基因表达变化相关。我们的结果表明复制时机受遗传多态性影响,并确定了遗传多态性调节附近序列变异性的手段。

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