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基于部分16S核糖体DNA序列分析的奈瑟菌属、不动杆菌属、莫拉克斯氏菌属和金氏杆菌属某些成员之间的系统发育关系。

Phylogenetic relationships between some members of the genera Neisseria, Acinetobacter, Moraxella, and Kingella based on partial 16S ribosomal DNA sequence analysis.

作者信息

Enright M C, Carter P E, MacLean I A, McKenzie H

机构信息

Department of Medical Microbiology, Faculty of Medicine, University of Aberdeen, Foresterhill, Scotland.

出版信息

Int J Syst Bacteriol. 1994 Jul;44(3):387-91. doi: 10.1099/00207713-44-3-387.

Abstract

We obtained 16S ribosomal DNA (rDNA) sequence data for strains belonging to 11 species of Proteobacteria, including the type strains of Kingella kingae, Neisseria lactamica, Neisseria meningitidis, Moraxella lacunata subsp. lacunata, [Neisseria] ovis, Moraxella catarrhalis, Moraxella osloensis, [Moraxella] phenylpyruvica, and Acinetobacter lwoffii, as well as strains of Neisseria subflava and Acinetobacter calcoaceticus. The data in a distance matrix constructed by comparing the sequences supported the proposal that the genera Acinetobacter and Moraxella and [N.] ovis should be excluded from the family Neisseriaceae. Our results are consistent with hybridization data which suggest that these excluded taxa should be part of a new family, the Moraxellaceae. The strains that we studied can be divided into the following five groups: (i) M. lacunata subsp. lacunata, [N.] ovis, and M. catarrhalis; (ii) M. osloensis; (iii) [M.] phenylpyruvica; (iv) A. calcoaceticus and A. lwoffii; and (v) N. meningitidis, N. subflava, N. lactamica, and K. kingae. We agree with the previous proposal that [N.] ovis should be renamed Moraxella ovis, as this organism is closely related to Moraxella species and not to Neisseria species. The generically misnamed taxon [M.] phenylpyruvica belongs to the proposed family Moraxellaceae, but it is sufficiently different to warrant exclusion from the genus Moraxella. Further work needs to be done to investigate genetically similar species, such as Psychrobacter immobilis, before the true generic position of this organism can be determined. Automated 16S rDNA sequencing with the PCR allows workers to accurately determine phylogenetic relationships between groups of organisms.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们获得了属于变形菌门11个物种的菌株的16S核糖体DNA(rDNA)序列数据,包括金氏金氏杆菌、乳酸奈瑟菌、脑膜炎奈瑟菌、腔隙莫拉菌亚种腔隙莫拉菌、[奈瑟菌属]绵羊奈瑟菌、卡他莫拉菌、奥斯陆莫拉菌、[莫拉菌属]苯丙酮酸莫拉菌和鲁氏不动杆菌的模式菌株,以及微黄奈瑟菌和醋酸钙不动杆菌的菌株。通过比较序列构建的距离矩阵中的数据支持将不动杆菌属、莫拉菌属和[绵羊奈瑟菌属]从奈瑟菌科中排除的提议。我们的结果与杂交数据一致,这些数据表明这些被排除的分类单元应属于一个新的科,即莫拉菌科。我们研究的菌株可分为以下五组:(i)腔隙莫拉菌亚种腔隙莫拉菌、[绵羊奈瑟菌属]和卡他莫拉菌;(ii)奥斯陆莫拉菌;(iii)[苯丙酮酸莫拉菌属];(iv)醋酸钙不动杆菌和鲁氏不动杆菌;(v)脑膜炎奈瑟菌、微黄奈瑟菌、乳酸奈瑟菌和金氏金氏杆菌。我们同意之前将[绵羊奈瑟菌属]重新命名为绵羊莫拉菌的提议,因为这种生物与莫拉菌属物种密切相关,而与奈瑟菌属物种无关。分类错误命名的分类单元[苯丙酮酸莫拉菌属]属于提议的莫拉菌科,但它与莫拉菌属有足够的差异,因此应从莫拉菌属中排除。在确定该生物的真正分类地位之前,需要进一步开展工作来研究基因相似的物种,如嗜冷栖冷菌。使用PCR进行自动化16S rDNA测序可使研究人员准确确定生物群体之间的系统发育关系。(摘要截短于250字)

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