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对18株嗜热甲烷杆菌分离株的系统发育分析支持了创建一个新属——嗜热甲烷杆菌属(Methanothermobacter gen. nov.)的提议,并支持将若干分离株重新分类到三个种中,即嗜热自养嗜热甲烷杆菌(Methanothermobacter thermautotrophicus comb. nov.)、沃尔夫嗜热甲烷杆菌(Methanothermobacter wolfeii comb. nov.)和马尔堡嗜热甲烷杆菌(Methanothermobacter marburgensis sp. nov.)。

Phylogenetic analysis of 18 thermophilic Methanobacterium isolates supports the proposals to create a new genus, Methanothermobacter gen. nov., and to reclassify several isolates in three species, Methanothermobacter thermautotrophicus comb. nov., Methanothermobacter wolfeii comb. nov., and Methanothermobacter marburgensis sp. nov.

作者信息

Wasserfallen A, Nölling J, Pfister P, Reeve J, Conway de Macario E

出版信息

Int J Syst Evol Microbiol. 2000 Jan;50 Pt 1:43-53. doi: 10.1099/00207713-50-1-43.

DOI:10.1099/00207713-50-1-43
PMID:10826786
Abstract

Using a combination of 16S rRNA analysis and antigenic fingerprinting consisting of new and published data, the phylogenetic position of 18 thermophilic isolates currently classified as Methanobacterium species was reinvestigated. The results were verified by independent methods, including, where applicable, plasmid and phage typing. Comparative analysis of 16S rRNA data for 30 strains belonging to the order Methanobacteriales strongly suggested that mesophilic and thermophilic Methanobacterium isolates are distantly related and should be assigned to separate genera. For the thermophilic strains the genus Methanothermobacter was initially proposed by Boone, Whitman and Rouvière. Furthermore, the results support a reclassification of 15 isolates in three species within the proposed genus: (i) Methanothermobacter thermautotrophicus comb. nov., containing eight isolates, six of which are able to utilize formate (type strain deltaHT); (ii) Methanothermobacter wolfeii comb. nov., containing four formate-utilizing isolates (type strain DSM 2970T); (iii) Methanothermobacter marburgensis sp. nov., containing three obligately autotrophic isolates (type strain MarburgT). Of the nine isolates formerly referred to as Methanobacterium thermoformicicum, six were reclassified as Methanothermobacter thermautotrophicus and three as Methanothermobacter wolfeii.

摘要

结合16S rRNA分析和由新数据及已发表数据组成的抗原指纹图谱,对目前归类为甲烷杆菌属物种的18株嗜热分离株的系统发育位置进行了重新研究。结果通过独立方法进行了验证,包括在适用情况下的质粒和噬菌体分型。对属于甲烷杆菌目的30个菌株的16S rRNA数据进行的比较分析强烈表明,嗜温甲烷杆菌分离株和嗜热甲烷杆菌分离株亲缘关系较远,应归入不同的属。对于嗜热菌株,Boone、Whitman和Rouvière最初提出了嗜热栖甲烷杆菌属。此外,结果支持将15株分离株重新分类为所提议属内的三个物种:(i)嗜热自养嗜热栖甲烷杆菌(Methanothermobacter thermautotrophicus)新组合,包含8株分离株,其中6株能够利用甲酸盐(模式菌株deltaHT);(ii)沃氏嗜热栖甲烷杆菌(Methanothermobacter wolfeii)新组合,包含4株利用甲酸盐的分离株(模式菌株DSM 2970T);(iii)马尔堡嗜热栖甲烷杆菌(Methanothermobacter marburgensis)新种,包含3株专性自养分离株(模式菌株马尔堡T)。在以前称为热甲酸甲烷杆菌(Methanobacterium thermoformicicum)的9株分离株中,6株被重新分类为嗜热自养嗜热栖甲烷杆菌,3株被重新分类为沃氏嗜热栖甲烷杆菌。

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