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首页> 外文期刊>The Journal of General and Applied Microbiology >Phylogenetic analysis of γ-proteobacteria inferred from nucleotide sequence comparisons of the house-keeping genes adk, aroE and gdh: Comparisons with phylogeny inferred from 16S rRNA gene sequences
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Phylogenetic analysis of γ-proteobacteria inferred from nucleotide sequence comparisons of the house-keeping genes adk, aroE and gdh: Comparisons with phylogeny inferred from 16S rRNA gene sequences

机译:从持家基因adk,aroE和gdh的核苷酸序列比较推断出的γ-变形杆菌的系统发生分析:与从16S rRNA基因序列推断出的系统发育的比较

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摘要

Nucleotide sequence comparisons of three house-keeping genes, adenylate kinase (adk), shikimate dehydrogenase (aroE), and glucose-6-phosphate dehydrogenase (gdh), were used to infer the phylogeny of 33 γ-proteobacteria. Phylogenetic trees inferred from each gene, and from the concatenated sequences of all three genes, are, in general, similar to a 16S rRNA gene-inferred tree. Similar grouping of bacteria are revealed at the family, genus, species and strain levels in all five trees. The house-keeping genes, however, show a higher rate of nucleotide sequence substitutions. Consequently, they can possibly probe deeper branches of a phylogenetic tree than the 16S rRNA gene. However, because their nucleotide sequences are not as highly conserved among γ-proteobacteria, family- or genus-specific primers would need to be designed for the amplification of any of these three house-keeping genes. Since these genes are used in multilocus sequence typing, it is expected that the number of sequences publicly available for many taxa will increase over time proving them very useful either at complementing 16S rRNA-inferred phylogenies or for specific, targeted, phylogenetic analysis.
机译:使用三个持家基因,腺苷酸激酶(adk),sh草酸脱氢酶(aroE)和葡萄糖-6-磷酸脱氢酶(gdh)的核苷酸序列比较来推断33种γ-蛋白细菌的系统发育。从每个基因以及所有三个基因的串联序列推断出的系统发育树通常类似于16S rRNA基因推断的树。在所有五棵树的科,属,种类和菌株水平上都揭示了相似的细菌分组。然而,管家基因显示出更高的核苷酸序列取代率。因此,他们可能比16S rRNA基因探测系统树的更深的分支。但是,由于它们的核苷酸序列在γ-变形杆菌中并不那么保守,因此需要设计家族或属特异性引物来扩增这三个持家基因中的任何一个。由于这些基因用于多基因座序列分型,因此,预计许多分类群公开可用的序列数会随着时间的推移而增加,证明它们在补充16S rRNA推断的系统发育或特定的,有针对性的系统发育分析中非常有用。

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