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分枝杆菌属快速生长成员的系统发育

Phylogeny of rapidly growing members of the genus Mycobacterium.

作者信息

Pitulle C, Dorsch M, Kazda J, Wolters J, Stackebrandt E

机构信息

Institut für Allgemeine Mikrobiologie, Christian-Albrechts-Universität, Kiel, Germany.

出版信息

Int J Syst Bacteriol. 1992 Jul;42(3):337-43. doi: 10.1099/00207713-42-3-337.

Abstract

The 16S rRNAs from nine rapidly growing Mycobacterium species were partially sequenced by using the dideoxynucleotide-terminated, primer extension method with cDNA generated by reverse transcriptase. The sequences were aligned with 47 16S rRNA or DNA sequences that represented 30 previously described and 5 undescribed species of the genus Mycobacterium, and a dendrogram was constructed by using equally weighted distance values. Our results confirmed the phylogenetic separation of the rapidly and slowly growing mycobacteria and showed that the majority of the slowly growing members of the genus represent the most recently evolved organisms. The 24 strains which represented 21 rapidly growing species constituted several sublines, which were defined by the following taxa: (i) Mycobacterium neoaurum and M. diernhoferi, (ii) M. gadium, (iii) the M. chubuense cluster, (iv) the M. fortuitum cluster, (v) M. kommossense, (vi) M. sphagni, (vii) M. fallax and M. chitae, (viii) M. aurum and M. vaccae, (ix) the M. flavescens cluster, and (x) M. chelonae subsp. abscessus. Our phylogenetic analysis confirmed the validity of the phenotypically defined species mentioned above, but our conclusions disagree with most of the conclusions about intrageneric relationships derived from numerical phenetic analyses.

摘要

采用双脱氧核苷酸终止的引物延伸法,以逆转录酶产生的cDNA对9种快速生长的分枝杆菌属细菌的16S rRNA进行了部分测序。将这些序列与代表分枝杆菌属30个先前描述的物种和5个未描述物种的47个16S rRNA或DNA序列进行比对,并使用等权重距离值构建了系统发育树状图。我们的结果证实了快速生长和缓慢生长分枝杆菌的系统发育分离,并表明该属中大多数缓慢生长的成员代表了最近进化的生物体。代表21个快速生长物种的24株菌株构成了几个亚系,这些亚系由以下分类群定义:(i)新金色分枝杆菌和迪尔恩霍费尔分枝杆菌,(ii)加迪乌姆分枝杆菌,(iii)中部分枝杆菌簇,(iv)偶然分枝杆菌簇,(v)科莫森斯分枝杆菌,(vi)泥炭藓分枝杆菌,(vii)衰落分枝杆菌和奇塔分枝杆菌,(viii)金色分枝杆菌和母牛分枝杆菌,(ix)微黄分枝杆菌簇,以及(x)龟分枝杆菌脓肿亚种。我们的系统发育分析证实了上述表型定义物种的有效性,但我们的结论与大多数从数值分类分析得出的关于属内关系的结论不一致。

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