Devereux R, He S H, Doyle C L, Orkland S, Stahl D A, LeGall J, Whitman W B
Department of Veterinary Pathobiology and Microbiology, University of Illinois, Urbana 61801.
J Bacteriol. 1990 Jul;172(7):3609-19. doi: 10.1128/jb.172.7.3609-3619.1990.
The different nutritional properties of several Desulfovibrio desulfuricans strains suggest that either the strains are misclassified or there is a high degree of phenotypic diversity within the genus Desulfovibrio. The results of partial 16S rRNA and 23S rRNA sequence determinations demonstrated that Desulfovibrio desulfuricans ATCC 27774 and "Desulfovibrio multispirans" are closely related to the type strain (strain Essex 6) and that strains ATCC 7757, Norway 4, and El Agheila Z are not. Therefore, these latter three strains of Desulfovibrio desulfuricans are apparently misclassified. A comparative analysis of nearly complete 16S rRNA sequences in which we used a least-squares analysis method for evolutionary distances, an unweighted pair group method, a signature analysis method, and maximum parsimony was undertaken to further investigate the phylogeny of Desulfovibrio species. The species analyzed were resolved into two branches with origins deep within the delta subdivision of the purple photosynthetic bacteria. One branch contained five deep lineages, which were represented by (i) Desulfovibrio salexigens and Desulfovibrio desulfuricans El Agheila Z; (ii) Desulfovibrio africanus; (iii) Desulfovibrio desulfuricans ATCC 27774, Desulfomonas pigra, and Desulfovibrio vulgaris; (iv) Desulfovibrio gigas; and (v) Desulfomicrobium baculatus (Desulfovibrio baculatus) and Desulfovibrio desulfuricans Norway 4. A correlation between 16S rRNA sequence similarity and percentage of DNA relatedness showed that these five deep lineages are related at levels below the minimum genus level suggested by Johnson (in Bergey's Manual of Systematic Bacteriology, vol. 1, 1984). We propose that this branch should be grouped into a single family, the Desulfovibrionaceae. The other branch includes other genera of sulfate-reducing bacteria (e.g., Desulfobacter and Desulfococcus) and contains Desulfovibrio sapovorans and Desulfovibrio baarsii as separate, distantly related lineages.
几种脱硫弧菌菌株不同的营养特性表明,要么这些菌株分类有误,要么脱硫弧菌属内存在高度的表型多样性。部分16S rRNA和23S rRNA序列测定结果表明,脱硫弧菌ATCC 27774和“多螺旋脱硫弧菌”与模式菌株(埃塞克斯6菌株)密切相关,而ATCC 7757、挪威4和阿盖拉Z菌株则不然。因此,后三种脱硫弧菌菌株显然分类有误。我们采用最小二乘法分析进化距离、非加权配对组法、特征分析方法和最大简约法对近乎完整的16S rRNA序列进行了比较分析,以进一步研究脱硫弧菌属的系统发育。所分析的物种被分为两个分支,起源于紫色光合细菌的δ亚群深处。一个分支包含五个深层谱系,分别由以下菌株代表:(i)嗜盐脱硫弧菌和阿盖拉Z脱硫弧菌;(ii)非洲脱硫弧菌;(iii)脱硫弧菌ATCC 27774、嗜猪脱硫单胞菌和普通脱硫弧菌;(iv)巨大脱硫弧菌;(v)杆状脱硫微菌(杆状脱硫弧菌)和挪威4脱硫弧菌。16S rRNA序列相似性与DNA相关性百分比之间的相关性表明,这五个深层谱系的相关性低于约翰逊(在《伯杰氏系统细菌学手册》第1卷,1984年)提出的最低属水平。我们建议将这个分支归为一个单一的科,即脱硫弧菌科。另一个分支包括其他硫酸盐还原菌属(如脱硫杆菌属和脱硫球菌属),并包含食腐脱硫弧菌和巴斯脱硫弧菌作为单独的、亲缘关系较远的谱系。