空肠弯曲杆菌和大肠杆菌基因进化模式分析。

Lars Snipen, Trudy M Wassenaar, Eric Altermann, Jonathan Olson, Sophia Kathariou, Karin Lagesen, Monica Takamiya, Susanne Knøchel, David W Ussery, Richard J Meinersmann
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引用次数: 10

摘要

背景:嗜热空肠弯曲杆菌和大肠弯曲杆菌被认为是弱克隆群体,其中遗传标记之间的不一致被认为是由于基因组DNA的随机水平转移。为了研究空肠和大肠杆菌的群体遗传结构,从27个已测序的基因组中提取了1180个核心基因家族(CGF)。我们采用主成分分析(PCA)对归一化进化距离进行分析,以揭示各种cgf中包含的进化信号的模式。结果:分析表明弯曲杆菌的保守基因表现出至少两种,可能是五种不同的进化信号模式,在我们的PCA得分空间中被视为集群。分离核心基因的主要潜在因素是区分空肠杆菌和大肠杆菌的能力。主基因群之外的基因簇有很强的成为染色体邻居的倾向,如果它们有共同的进化史,这是很自然的。此外,主群外最明显的聚类富集了正选择下的基因,表现出高于平均水平的重组率。结论:本文研究的弯曲杆菌基因组表明,保守基因亚群之间的差异比预期的通过随机水平转移更为系统,这与作用于不同基因的选择压力差异是一致的。这些发现表明,细菌种群的特征是基因组具有混合的进化模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Analysis of evolutionary patterns of genes in Campylobacter jejuni and C. coli.

Unlabelled:

Background: The thermophilic Campylobacter jejuni and Campylobacter coli are considered weakly clonal populations where incongruences between genetic markers are assumed to be due to random horizontal transfer of genomic DNA. In order to investigate the population genetics structure we extracted a set of 1180 core gene families (CGF) from 27 sequenced genomes of C. jejuni and C. coli. We adopted a principal component analysis (PCA) on the normalized evolutionary distances in order to reveal any patterns in the evolutionary signals contained within the various CGFs.

Results: The analysis indicates that the conserved genes in Campylobacter show at least two, possibly five, distinct patterns of evolutionary signals, seen as clusters in the score-space of our PCA. The dominant underlying factor separating the core genes is the ability to distinguish C. jejuni from C. coli. The genes in the clusters outside the main gene group have a strong tendency of being chromosomal neighbors, which is natural if they share a common evolutionary history. Also, the most distinct cluster outside the main group is enriched with genes under positive selection and displays larger than average recombination rates.

Conclusions: The Campylobacter genomes investigated here show that subsets of conserved genes differ from each other in a more systematic way than expected by random horizontal transfer, and is consistent with differences in selection pressure acting on different genes. These findings are indications of a population of bacteria characterized by genomes with a mixture of evolutionary patterns.

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