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首页> 外文期刊>Journal of Clinical Microbiology >Genetic Organization of Pasteurella multocida cap Loci and Development of a Multiplex Capsular PCR Typing System
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Genetic Organization of Pasteurella multocida cap Loci and Development of a Multiplex Capsular PCR Typing System

机译:多杀性巴斯德氏菌帽位点的遗传组织和多重荚膜PCR分型系统的发展。

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Current serotyping methods classify Pasteurella multocida into five capsular serogroups (serogroups A, B, D, E, and F) and 16 somatic serotypes (serotypes 1 to 16). In the present study, we have developed a multiplex PCR assay as a rapid alternative to the conventional capsular serotyping system. The serogroup-specific primers used in this assay were designed following identification, sequence determination, and analysis of the capsular biosynthetic loci of each capsular serogroup. The entire capsular biosynthetic loci ofP. multocida A:1 (X-73) and B:2 (M1404) have been cloned and sequenced previously (J. Y. Chung, Y. M. Zhang, and B. Adler, FEMS Microbiol. Lett. 166:289–296, 1998; J. D. Boyce, J. Y. Chung, and B. Adler, Vet. Microbiol. 72:121–134, 2000). Nucleotide sequence analysis of the biosynthetic region (region 2) from each of the remaining three serogroups, serogroups D, E, and F, identified serogroup-specific regions and gave an indication of the capsular polysaccharide composition. The multiplex capsular PCR assay was highly specific, and its results, with the exception of those for some serogroup F strains, correlated well with conventional serotyping results. Sequence analysis of the strains that gave conflicting results confirmed the validity of the multiplex PCR and indicated that these strains were in fact capsular serogroup A. The multiplex PCR will clarify the distinction between closely related serogroups A and F and constitutes a rapid assay for the definitive classification of P. multocida capsular types.
机译:当前的血清分型方法将多杀巴斯德氏菌分为五个荚膜血清群(A,B,D,E和F血清群)和16种体细胞血清型(1至16型)。在本研究中,我们已经开发了一种多重PCR检测方法,可以作为常规荚膜血清分型系统的快速替代方法。在鉴定,序列确定和分析每个荚膜血清群的荚膜生物合成基因座后,设计用于该测定的血清群特异性引物。整个P的荚膜生物合成位点。先前已经克隆并测序了多杀菌A:1(X-73)和B:2(M1404)(JY Chung,YM Zhang和B.Adler,FEMS Microbiol.Lett.166:289-296,1998 ; JD Boyce,JY Chung和B. Adler,Vet。Microbiol。72:121–134,2000年)。其余三个血清群(血清群D,E和F)中每个生物群的生物合成区域(区域2)的核苷酸序列分析确定了血清群特异性区域,并表明了荚膜多糖的组成。多重荚膜PCR测定法具有很高的特异性,除某些血清群F菌株的测定结果外,其结果与常规血清分型结果具有很好的相关性。对产生冲突结果的菌株进行序列分析,证实了多重PCR的有效性,并表明这些菌株实际上是荚膜血清群A。多重PCR将阐明密切相关的血清群A和F的区别,并构成确定性的快速检测方法P的分类。多虫科荚膜类型。

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