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基于rpoB序列的巴斯德菌科系统发育

Phylogeny of the family Pasteurellaceae based on rpoB sequences.

作者信息

Korczak Bożena, Christensen Henrik, Emler Stefan, Frey Joachim, Kuhnert Peter

机构信息

Institute of Veterinary Bacteriology, University of Bern, CH-3012 Bern, Switzerland.

Department of Veterinary Microbiology, The Royal Veterinary and Agricultural University, DK-1870 Frederiksberg C, Denmark.

出版信息

Int J Syst Evol Microbiol. 2004 Jul;54(Pt 4):1393-1399. doi: 10.1099/ijs.0.03043-0.

Abstract

Sequences of the gene encoding the beta-subunit of the RNA polymerase (rpoB) were used to delineate the phylogeny of the family Pasteurellaceae. A total of 72 strains, including the type strains of the major described species as well as selected field isolates, were included in the study. Selection of universal rpoB-derived primers for the family allowed straightforward amplification and sequencing of a 560 bp fragment of the rpoB gene. In parallel, 16S rDNA was sequenced from all strains. The phylogenetic tree obtained with the rpoB sequences reflected the major branches of the tree obtained with the 16S rDNA, especially at the genus level. Only a few discrepancies between the trees were observed. In certain cases the rpoB phylogeny was in better agreement with DNA-DNA hybridization studies than the phylogeny derived from 16S rDNA. The rpoB gene is strongly conserved within the various species of the family of Pasteurellaceae. Hence, rpoB gene sequence analysis in conjunction with 16S rDNA sequencing is a valuable tool for phylogenetic studies of the Pasteurellaceae and may also prove useful for reorganizing the current taxonomy of this bacterial family.

摘要

编码RNA聚合酶β亚基(rpoB)的基因序列被用于描绘巴斯德氏菌科的系统发育。该研究共纳入了72株菌株,包括主要已描述物种的模式菌株以及选定的野外分离株。为该科选择通用的rpoB衍生引物,使得rpoB基因的560 bp片段能够直接进行扩增和测序。同时,对所有菌株的16S rDNA进行了测序。用rpoB序列构建的系统发育树反映了用16S rDNA构建的系统发育树的主要分支,尤其是在属水平上。仅观察到两棵树之间存在一些差异。在某些情况下,rpoB系统发育与DNA-DNA杂交研究的一致性比16S rDNA衍生的系统发育更好。rpoB基因在巴斯德氏菌科的各个物种中高度保守。因此,rpoB基因序列分析结合16S rDNA测序是巴斯德氏菌科系统发育研究的一种有价值的工具,也可能被证明对重新组织该细菌科的当前分类有用。

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