Angen O, Mutters R, Caugant D A, Olsen J E, Bisgaard M
Department of Veterinary Microbiology, Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
Int J Syst Bacteriol. 1999 Jan;49 Pt 1:67-86. doi: 10.1099/00207713-49-1-67.
The present paper presents the conclusions of a polyphasic investigation of the taxonomy of the trehalose-negative [Pasteurella] haemolytica complex. Clusters previously identified by ribotyping and multilocus enzyme electrophoresis (MEE) have been evaluated by 16S rRNA sequencing and DNA-DNA hybridizations. Results obtained by the different techniques were highly related and indicated that the [P.] haemolytica complex contains distinct genetic and phenotypic groups. At least seven species were outlined, five of which were named. We refrained in formal naming of more groups until additional strains are characterized. Five 16S rRNA clusters were identified corresponding to distinct lineages previously outlined by MEE. Within 16S rRNA cluster I two distinct genotypic groups have been outlined in addition to [P.] haemolytica sensu stricto (biogroup 1). Each of the clusters II, III, IV and V represent at least one new species. The investigations underline that [P.] haemolytica sensu stricto only contains strains that do not ferment L-arabinose even though they are referred to as 'biotype A' of [P.] haemolytica. The five 16S rRNA clusters identified had a common root relative to the other species within the family Pasteurellaceae, and the overall sequence similarity among these five clusters was higher than what is observed within the existing genera of the family. The allocation of the trehalose-negative [P.] haemolytica complex to a new genus seems to be indicated. Based on the polyphasic investigation performed a new genus Mannheimia is proposed for the trehalose-negative [P.] haemolytica complex. At the present stage two previously named species are transferred to this new genus and three new species are described. [P.] haemolytica is reclassified as Mannheimia haemolytica comb. nov., whereas Pasteurella granulomatis, Bisgaard taxon 20 and [P.] haemolytica biovar 3J are reclassified and combined in the species Mannheimia granulomatis comb. nov. Mannheimia glucosida sp. nov. corresponds to [P.] haemolytica biogroups 3A-3H and the beta-glucosidase and meso-inositol-positive strains of [P.] haemolytica biogroup 9. All typable strains within M. glucosida belong to serotype 11. Mannheimia ruminalis sp. nov. consists of strains previously classified as Bisgaard taxon 18 and [P.] haemolytica biogroup 8D. Finally, Mannheimia varigena sp. nov. includes [P.] haemolytica biogroup 6 as well as Bisgaard taxon 15 and Bisgaard taxon 36. The type strains are NCTC 9380T (M. haemolytica), ATCC 49244T (M. granulomatis), CCUG 38457T = P925T (M. glucosida), CCUG 38470T = HPA92T (M. ruminalis) and CCUG 38462T = 177T (M. varigena).
本文介绍了对溶血 [巴斯德氏菌] 海藻糖阴性菌复合体进行多相分类研究的结论。先前通过核糖体分型和多位点酶电泳(MEE)鉴定出的聚类,已通过16S rRNA测序和DNA-DNA杂交进行评估。不同技术获得的结果高度相关,表明溶血 [巴斯德氏菌] 复合体包含不同的遗传和表型组。至少确定了七个种,其中五个已命名。在鉴定更多菌株之前,我们暂不正式命名更多的组。鉴定出五个16S rRNA聚类,对应于先前MEE确定的不同谱系。在16S rRNA聚类I中,除了狭义的溶血 [巴斯德氏菌](生物群1)外,还确定了两个不同的基因型组。聚类II、III、IV和V中的每一个都代表至少一个新种。这些研究强调,狭义的溶血 [巴斯德氏菌] 仅包含不发酵L-阿拉伯糖的菌株,尽管它们被称为溶血 [巴斯德氏菌] 的“A生物型”。鉴定出的五个16S rRNA聚类相对于巴斯德氏菌科内的其他种有一个共同的根,并且这五个聚类之间的总体序列相似性高于该科现有属内观察到的相似性。似乎有必要将海藻糖阴性的溶血 [巴斯德氏菌] 复合体归入一个新属。基于所进行的多相研究,为海藻糖阴性的溶血 [巴斯德氏菌] 复合体提出了一个新属——曼氏杆菌属。在现阶段,将两个先前命名的种转移到这个新属,并描述了三个新种。溶血 [巴斯德氏菌] 被重新分类为溶血曼氏杆菌,新组合。而肉芽肿巴斯德氏菌、比斯加德分类单元20和溶血 [巴斯德氏菌] 生物变种3J被重新分类并合并为肉芽肿曼氏杆菌,新组合。葡萄糖苷曼氏杆菌,新种对应于溶血 [巴斯德氏菌] 生物群3A - 3H以及溶血 [巴斯德氏菌] 生物群9的β-葡萄糖苷酶和中肌醇阳性菌株。葡萄糖苷曼氏杆菌内所有可分型菌株均属于血清型11。瘤胃曼氏杆菌,新种由先前分类为比斯加德分类单元18和溶血 [巴斯德氏菌] 生物群8D的菌株组成。最后,多样曼氏杆菌,新种包括溶血 [巴斯德氏菌] 生物群6以及比斯加德分类单元15和比斯加德分类单元36。模式菌株分别为NCTC 9380T(溶血曼氏杆菌)、ATCC 49244T(肉芽肿曼氏杆菌)、CCUG 38457T = P925T(葡萄糖苷曼氏杆菌)、CCUG 38470T = HPA92T(瘤胃曼氏杆菌)和CCUG 38462T = 177T(多样曼氏杆菌)。