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首页> 外文期刊>The Journal of Heredity >DNA Repair Is Associated with Information Content in Bacteria, Archaea, and DNA Viruses
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DNA Repair Is Associated with Information Content in Bacteria, Archaea, and DNA Viruses

机译:DNA修复与细菌,古细菌和DNA病毒中的信息含量相关

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The concept of a "proteomic constraint" proposes that DNA repair capacity is positively correlated with the information content of a genome, which can be approximated to the size of the proteome (P). This in turn implies that DNA repair genes are more likely to be present in genomes with larger values of P. This stands in contrast to the common assumption that informational genes have a core function and so are evenly distributed across organisms. We examined the presence/absence of 18 DNA repair genes in bacterial genomes. A positive relationship between gene presence and P was observed for 17 genes in the total dataset, and 16 genes when only nonintracellular bacteria were examined. A marked reduction of DNA repair genes was observed in intracellular bacteria, consistent with their reduced value of P. We also examined archaeal and DNA virus genomes, and show that the presence of DNA repair genes is likewise related to a larger value of P. In addition, the products of the bacterial genes mutY, vsr, and ndk, involved in the correction of GC/AT mutations, are strongly associated with reduced genome GC content. We therefore propose that a reduction in information content leads to a loss of DNA repair genes and indirectly to a reduction in genome GC content in bacteria by exposure to the underlying AT mutation bias. The reduction in P may also indirectly lead to the increase in substitution rates observed in intracellular bacteria via loss of DNA repair genes.
机译:“蛋白质组学约束”的概念提出,DNA修复能力与基因组的信息含量呈正相关,可以近似于蛋白质组的大小(P)。这反过来意味着DNA修复基因更可能存在于P值较大的基因组中。这与信息基因具有核心功能并因此在整个生物体中均匀分布的普遍假设形成了鲜明对比。我们检查了细菌基因组中18个DNA修复基因的存在/不存在。在整个数据集中,有17个基因观察到了基因存在与P之间的正相关,而仅检查非细胞内细菌时,观察到了16个基因。在细胞内细菌中观察到DNA修复基因的显着减少,与其降低的P值一致。我们还检查了古细菌和DNA病毒基因组,并表明DNA修复基因的存在同样与更大的P值有关。此外,涉及校正GC / AT突变的细菌基因mutY,vsr和ndk的产物与降低的基因组GC含量密切相关。因此,我们提出信息含量的降低会导致DNA修复基因的丢失,并通过暴露于潜在的AT突变偏见而间接导致细菌中基因组GC含量的降低。 P的减少也可能间接导致DNA修复基因丢失,从而导致细胞内细菌中观察到的取代率增加。

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