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首页> 外文期刊>Molecular biology and evolution >Networks and groups within the genus Neisseria: Analysis of argF, recA,rho, and 16S rRNA sequences from human Neisseria species
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Networks and groups within the genus Neisseria: Analysis of argF, recA,rho, and 16S rRNA sequences from human Neisseria species

机译:奈瑟氏球菌属内的网络和群体:分析人类奈瑟氏球菌属物种的argF,recA,rho和16S rRNA序列

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To understand the pattern of nucleotide sequence variation among bacteria that frequently exchange chromosomal genes, we analyzed sequences of the recA, argF, and rho genes, as well as part of the small-subunit (16S) rRNA gene, from about 50 isolates of human commensal Neisseria species and the pathogenic N. meningitidis and N. gonorrhoeae. Almost all isolates of these species could be assigned to five phylogenetic groups that are found for all genes examined and generally are supported by high bootstrap values. In contrast, the phylogenetic relationships among groups varied according to the gene analyzed with notable incongruences involving N. cinerea and N. lactamica. Further analysis using split decomposition showed that for each gene, including 16S rRNA, the patterns of sequence divergence within N. meningitidis and closely related species were inconsistent with a bifurcating treelike phylogeny and better represented by an interconnected network. These data indicate that the human commensal Neisseria species can be separated into discrete groups of related species but that the relationships both within and among these groups, including those reconstructed using 16S rRNA, have been distorted by interspecies recombination events.
机译:为了了解经常交换染色体基因的细菌之间核苷酸序列变异的模式,我们分析了来自大约50种人类分离株的recA,argF和rho基因的序列,以及小亚基(16S)rRNA基因的一部分。共生奈瑟菌属和致病性脑膜炎奈瑟氏球菌和淋病奈瑟氏球菌。这些物种的几乎所有分离物都可以归为五个系统发育组,这些组针对所有检查的基因均发现,并且通常由高自举值支持。相反,各组之间的系统发生关系根据所分析的基因而变化,其中涉及灰质猪笼草和内酰胺猪笼草的显着不一致。使用分裂分解的进一步分析表明,对于包括16S rRNA在内的每个基因,脑膜炎奈瑟氏球菌和紧密相关物种内的序列差异模式与分叉的树状系统发育不一致,并且可以通过互连网络更好地表示。这些数据表明,人类共生奈瑟氏球菌属种可以分为相关物种的离散组,但这些组内和组间的关系(包括使用16S rRNA重建的那些关系)已因种间重组事件而扭曲。

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