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Spontaneous mutations of a model heterotrophic marine bacterium

机译:模式异养海洋细菌的自发突变

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摘要

Heterotrophic marine bacterioplankton populations display substantive genomic diversity that is commonly explained to be the result of selective forces imposed by resource limitation or interactions with phage and predators. Here we use a mutation-accumulation experiment followed by whole-genome sequencing of mutation lines to determine an unbiased rate and molecular spectrum of spontaneous mutations for a model heterotrophic marine bacterium in the globally important Roseobacter clade, Ruegeria pomeroyi DSS-3. We find evidence for mutational bias towards deletions over insertions, and this process alone could account for a sizable portion of genome size diversity among roseobacters and also implies that lateral gene transfer and/or selection must also play a role in maintaining roseobacters with large genome sizes. We also find evidence for a mutational bias in favor of changes from A/T to G/C nucleobases, which explains widespread occurrences of G/C-enriched Roseobacter genomes. Using the calculated mutation rate of 1.39 × 10−10 per base per generation, we implement a ‘mutation-rate clock’ approach to date the evolution of roseobacters by assuming a constant mutation rate along their evolutionary history. This approach gives an estimated date of Roseobacter genome expansion in good agreement with an earlier fossil-based estimate of ~250 million years ago and is consistent with a hypothesis of a correlated evolutionary history between roseobacters and marine eukaryotic phytoplankton groups.
机译:异养海洋浮游生物种群显示出实质性的基因组多样性,通常被解释为资源有限或与噬菌体和捕食者相互作用所施加的选择性力的结果。在这里,我们使用突变积累实验,然后对突变株系进行全基因组测序,以确定在全球重要的玫瑰细菌进化枝Ruegeria pomeroyi DSS-3中模型异养海洋细菌的自发突变率和无偏率。我们发现证据表明突变偏向插入后的缺失,仅此过程就可以解释玫瑰细菌中基因组大小多样性的相当大的部分,并且还暗示侧向基因转移和/或选择也必须在维持具有较大基因组大小的玫瑰细菌中发挥作用。我们还找到了支持从A / T变为G / C核碱基的突变偏见的证据,这解释了富含G / C的Roseobacter基因组的广泛出现。使用计算出的每代碱基每碱基1.39×10 −10 的突变率,我们采用“突变率时钟”方法来确定玫瑰菌的进化历史,方法是假设其沿进化史保持恒定的突变率。这种方法给出了玫瑰细菌基因组扩展的估计日期,与大约2.5亿年前基于化石的早期估计非常吻合,并且与玫瑰细菌和海洋真核浮游植物群之间相关的进化史的假设相一致。

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