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基于rpoB基因序列对链球菌属、肠球菌属、孪生球菌属、嗜氨基酸菌属和颗粒链菌属需氧革兰氏阳性球菌的鉴定

rpoB gene sequence-based identification of aerobic Gram-positive cocci of the genera Streptococcus, Enterococcus, Gemella, Abiotrophia, and Granulicatella.

作者信息

Drancourt Michel, Roux Véronique, Fournier Pierre-Edouard, Raoult Didier

机构信息

Unité des Rickettsies, IFR 48, Faculté de Médecine, Université de la Méditerranée, Marseille, France.

出版信息

J Clin Microbiol. 2004 Feb;42(2):497-504. doi: 10.1128/JCM.42.2.497-504.2004.

Abstract

We developed a new molecular tool based on rpoB gene (encoding the beta subunit of RNA polymerase) sequencing to identify streptococci. We first sequenced the complete rpoB gene for Streptococcus anginosus, S. equinus, and Abiotrophia defectiva. Sequences were aligned with these of S. pyogenes, S. agalactiae, and S. pneumoniae available in GenBank. Using an in-house analysis program (SVARAP), we identified a 740-bp variable region surrounded by conserved, 20-bp zones and, by using these conserved zones as PCR primer targets, we amplified and sequenced this variable region in an additional 30 Streptococcus, Enterococcus, Gemella, Granulicatella, and Abiotrophia species. This region exhibited 71.2 to 99.3% interspecies homology. We therefore applied our identification system by PCR amplification and sequencing to a collection of 102 streptococci and 60 bacterial isolates belonging to other genera. Amplicons were obtained in streptococci and Bacillus cereus, and sequencing allowed us to make a correct identification of streptococci. Molecular signatures were determined for the discrimination of closely related species within the S. pneumoniae-S. oralis-S. mitis group and the S. agalactiae-S. difficile group. These signatures allowed us to design a S. pneumoniae-specific PCR and sequencing primer pair.

摘要

我们开发了一种基于rpoB基因(编码RNA聚合酶的β亚基)测序的新型分子工具来鉴定链球菌。我们首先对咽峡炎链球菌、马肠链球菌和缺陷乏养菌的完整rpoB基因进行了测序。将所得序列与GenBank中已有的化脓性链球菌、无乳链球菌和肺炎链球菌的序列进行比对。使用一个内部分析程序(SVARAP),我们鉴定出一个740 bp的可变区,其两侧为保守的20 bp区域,通过将这些保守区域作为PCR引物靶点,我们在另外30种链球菌、肠球菌、孪生球菌、颗粒链菌属和乏养菌属细菌中扩增并测序了这个可变区。该区域的种间同源性为71.2%至99.3%。因此,我们通过PCR扩增和测序将我们的鉴定系统应用于102株链球菌和60株属于其他属的细菌分离株。在链球菌和蜡样芽孢杆菌中获得了扩增子,测序使我们能够正确鉴定链球菌。确定了分子特征以区分肺炎链球菌-口腔链球菌-缓症链球菌组和无乳链球菌-艰难链球菌组内的近缘种。这些特征使我们能够设计一对肺炎链球菌特异性PCR和测序引物。

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