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首页> 外文期刊>Research in Microbiology >Detection and subtyping of Actinobacillus pleuropneumoniae strains by PCR-RFLP analysis of the tbpA and tbpB genes.
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Detection and subtyping of Actinobacillus pleuropneumoniae strains by PCR-RFLP analysis of the tbpA and tbpB genes.

机译:通过tbpA和tbpB基因的PCR-RFLP分析检测胸膜肺炎放线杆菌菌株并进行亚型分析。

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摘要

A PCR-based procedure for detection and serotype identification of Actinobacillus pleuropneumoniae strains was developed and evaluated. The A. pleuropneumoniae tbpA and tbpB genes were used as targets for amplification of DNA fragments, with a pair of specific primers for each gene. Amplification with tbpA primers rendered a 2.8-kb PCR product from all 12 A. pleuropneumoniae reference strains as well as from Actinobacillus suis strain CCM 5586, while amplification of a 1.9-kb PCR product was observed when testing ten Haemophilus parasuis strains of different serovars. Amplification of the tbpB gene from A. pleuropneumoniae serotypes 1, 6, 8 and 12, and A. suis CCM 5586 rendered an identical 1.8-kb fragment, while from A. pleuropneumoniae serotypes 2, 3, 4, 7, 9, 10 and 11, and H. parasuis strains it produced a 1.7-kb fragment. No PCR amplification product was observed when examining strains of 19 other swine pathogens or closely related species. The minimal detection limit for whole-cell A. pleuropneumoniae templates was between 5-50 and 3 x 10(2)-3 x 10(3) CFU when tbpA and tbpB specific primers, respectively, were used. Restriction fragment length polymorphism (RFLP) analysis of the PCR-generated products rendered different patterns, easily allowing us to discriminate between A. pleuropneumoniae, H. parasuis and A. suis and, more importantly, to distinguish ten RFLP A. pleuropneumoniae groups (the highest discrimination reported so far for a PCR assay with A. pleuropneumoniae), in such a way that the only serotypes with profiles identical to each other were 4 to 11 and 7 to 9. Moreover, the PCR-RFLP analysis was assayed in 36 A. pleuropneumoniae field isolates and in porcine samples (lungs and nasal swabs from experimentally infected animals). In both cases the system proved to be very efficient in A. pleuropneumoniae identification and serotype discrimination.
机译:开发并评估了基于PCR的胸膜肺炎放线杆菌菌株检测和血清型鉴定方法。胸膜肺炎链球菌tbpA和tbpB基因用作DNA片段扩增的靶标,每个基因都有一对特异性引物。用tbpA引物进行扩增可从所有12株胸膜肺炎参比菌株和猪放线杆菌CCM 5586中获得2.8kb的PCR产物,而在测试十个不同血清型的副猪嗜血杆菌菌株时可观察到1.9kb的PCR产物的扩增。从胸膜肺炎链球菌血清型1、6、8、12和猪链球菌CCM 5586扩增tbpB基因可得到相同的1.8 kb片段,而从胸膜肺炎链球菌血清型2、3、4、7、9、10和11,副猪嗜血杆菌菌株产生了一个1.7kb的片段。检查其他19种猪病原体或密切相关物种的菌株时,未观察到PCR扩增产物。当分别使用tbpA和tbpB特异性引物时,全细胞肺炎链球菌模板的最低检测限在5-50和3 x 10(2)-3 x 10(3)CFU之间。 PCR生成的产物的限制性片段长度多态性(RFLP)分析提供了不同的模式,轻松地使我们能够区分胸膜肺炎链球菌,副猪嗜血杆菌和猪链球菌,更重要的是,可以区分十个RFLP胸膜肺炎链球菌组(迄今为止报告的胸膜肺炎放线杆菌PCR检测的最高判别率是这样的,即仅具有相同特征的血清型彼此相同的是4至11和7至9。此外,PCR-RFLP分析是在36 A猪肺炎肺炎支原体分离株和猪样品(实验感染动物的肺和鼻拭子)。在这两种情况下,该系统在胸膜肺炎链球菌的鉴定和血清型鉴别中都被证明是非常有效的。

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