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Periodic Variation of Mutation Rates in Bacterial Genomes Associated with Replication Timing

机译:与复制时间相关的细菌基因组突变率的周期性变化。

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ABSTRACT The causes and consequences of spatiotemporal variation in mutation rates remain to be explored in nearly all organisms. Here we examine relationships between local mutation rates and replication timing in three bacterial species whose genomes have multiple chromosomes: Vibrio fischeri , Vibrio cholerae , and Burkholderia cenocepacia . Following five mutation accumulation experiments with these bacteria conducted in the near absence of natural selection, the genomes of clones from each lineage were sequenced and analyzed to identify variation in mutation rates and spectra. In lineages lacking mismatch repair, base substitution mutation rates vary in a mirrored wave-like pattern on opposing replichores of the large chromosomes of V.?fischeri and V.?cholerae , where concurrently replicated regions experience similar base substitution mutation rates. The base substitution mutation rates on the small chromosome are less variable in both species but occur at similar rates to those in the concurrently replicated regions of the large chromosome. Neither nucleotide composition nor frequency of nucleotide motifs differed among regions experiencing high and low base substitution rates, which along with the inferred ~800-kb wave period suggests that the source of the periodicity is not sequence specific but rather a systematic process related to the cell cycle. These results support the notion that base substitution mutation rates are likely to vary systematically across many bacterial genomes, which exposes certain genes to elevated deleterious mutational load. IMPORTANCE That mutation rates vary within bacterial genomes is well known, but the detailed study of these biases has been made possible only recently with contemporary sequencing methods. We applied these methods to understand how bacterial genomes with multiple chromosomes, like those of Vibrio and Burkholderia , might experience heterogeneous mutation rates because of their unusual replication and the greater genetic diversity found on smaller chromosomes. This study captured thousands of mutations and revealed wave-like rate variation that is synchronized with replication timing and not explained by sequence context. The scale of this rate variation over hundreds of kilobases of DNA strongly suggests that a temporally regulated cellular process may generate wave-like variation in mutation risk. These findings add to our understanding of how mutation risk is distributed across bacterial and likely also eukaryotic genomes, owing to their highly conserved replication and repair machinery.
机译:摘要几乎所有生物体中突变率的时空变异的原因和后果仍有待探索。在这里,我们研究了三种细菌的基因组具有多条染色体的局部突变率与复制时机之间的关系:费氏弧菌,霍乱弧菌和新伯克霍尔德菌。在几乎没有自然选择的情况下对这些细菌进行了五次突变积累实验后,对每个谱系的克隆的基因组进行了测序和分析,以鉴定突变率和光谱的变化。在缺乏错配修复的谱系中,菲氏弧菌和霍乱弧菌大染色体的相对复制体上的碱基取代突变率以镜像波状变化,其中同时复制的区域经历相似的碱基取代突变率。小染色体上的碱基取代突变率在两个物种中变化都较小,但发生率与大染色体同时复制区域的突变率相似。在经历高碱基取代率和低碱基取代率的区域之间,核苷酸组成和核苷酸基序的频率都没有差异,这与推断的〜800-kb波周期一起表明,周期性的来源不是序列特异性的,而是与细胞有关的系统过程周期。这些结果支持了这样一种观念,即碱基取代突变率可能会在许多细菌基因组中系统地变化,从而使某些基因遭受有害突变负荷的增加。重要信息众所周知,细菌基因组中的突变率各不相同,但是对这些偏差的详细研究直到最近才有了当代测序方法。我们应用这些方法来了解具有多条染色体的细菌基因组(如弧菌和伯克霍尔德氏菌)如何因异乎寻常的复制以及在较小染色体上发现的更大遗传多样性而经历异质突变率。这项研究捕获了数千个突变,并揭示了波状速率变化,该变化与复制时机同步,且未由序列上下文解释。这种速率变化在数百千个碱基的DNA上的大小强烈表明,时间调控的细胞过程可能会在突变风险中产生波浪状的变化。这些发现增加了我们对突变风险如何在细菌和真核基因组之间分布的理解,这是由于它们高度保守的复制和修复机制。

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