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Single-Nucleotide Polymorphism-Based Genetic Diversity Analysis of Clinical Pseudomonas aeruginosa Isolates

机译:基于单核苷酸多态性的铜绿假单胞菌临床分离株遗传多样性分析

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摘要

Extensive use of next-generation sequencing has the potential to transform our knowledge on how genomic variation within bacterial species impacts phenotypic versatility. Because different environments have unique selection pressures, they drive divergent evolution. However, there is also parallel or convergent evolution of traits in independent bacterial isolates inhabiting similar environments. The application of tools to describe population-wide genomic diversity provides an opportunity to measure the predictability of genetic changes underlying adaptation. Here, we describe patterns of sequence variations in the core genome among 99 individual clinical isolates and identified single-nucleotide polymorphisms that are the basis for branching of the phylogenetic tree. We also identified single-nucleotide polymorphisms that were acquired independently, in separate lineages, and not through inheritance from a common ancestor. Although our results demonstrate that the core genome is highly conserved and in general, not subject to adaptive evolution, instances of parallel evolution will provide an opportunity to uncover genetic changes that underlie phenotypic diversity.
机译:下一代测序的广泛应用有可能改变我们关于细菌物种内的基因组变异如何影响表型多功能性的知识。由于不同的环境具有独特的选择压力,因此它们会导致差异化的发展。但是,在居住于类似环境的独立细菌分离物中,性状也有平行或趋同的演变。用来描述整个人群基因组多样性的工具的应用为衡量适应基础遗传变化的可预测性提供了机会。在这里,我们描述了99个个体临床分离株之间核心基因组中序列变异的模式,并确定了单核苷酸多态性,这是系统发育树分支的基础。我们还确定了单核苷酸多态性,这些多态性是在独立的谱系中独立获得的,而不是通过从共同祖先继承而获得的。尽管我们的研究结果表明核心基因组是高度保守的,并且通常不受适应性进化的影响,但平行进化的实例将为揭示表型多样性基础的遗传变化提供机会。

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