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On the Mutational Topology of the Bacterial Genome

机译:细菌基因组的突变拓扑

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摘要

By sequencing the genomes of 34 mutation accumulation lines of a mismatch-repair defective strain of Escherichia coli that had undergone a total of 12,750 generations, we identified 1625 spontaneous base-pair substitutions spread across the E. coli genome. These mutations are not distributed at random but, instead, fall into a wave-like spatial pattern that is repeated almost exactly in mirror image in the two separately replicated halves of the bacterial chromosome. The pattern is correlated to genomic features, with mutation densities greatest in regions predicted to have high superhelicity. Superimposed upon this pattern are regional hotspots, some of which are located where replication forks may collide or be blocked. These results suggest that, as they traverse the chromosome, the two replication forks encounter parallel structural features that change the fidelity of DNA replication.
机译:通过对总共经历了12750代的大肠杆菌错配修复缺陷菌株的34个突变累积系的基因组进行测序,我们确定了分布在整个大肠杆菌基因组中的1625个自发碱基对取代。这些突变不是随机分布的,而是落入一种波浪状的空间模式中,在细菌染色体的两个分别复制的两半中几乎完全以镜像的方式重复。该模式与基因组特征相关,在预测具有高超螺旋性的区域中突变密度最大。在该模式上叠加了区域热点,其中一些热点位于复制叉可能碰撞或阻塞的位置。这些结果表明,当它们穿过染色体时,两个复制叉遇到平行的结构特征,这些特征改变了DNA复制的保真度。

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