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首页> 外文期刊>Journal of Clinical Microbiology >Pulsed-Field Gel Electrophoresis Is More Efficient than Ribotyping and Random Amplified Polymorphic DNA Analysis in Discrimination of Pasteurella haemolytica Strains
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Pulsed-Field Gel Electrophoresis Is More Efficient than Ribotyping and Random Amplified Polymorphic DNA Analysis in Discrimination of Pasteurella haemolytica Strains

机译:在溶血巴斯德氏菌菌株的鉴别中,脉冲场凝胶电泳比核糖分型和随机扩增多态性DNA分析更有效。

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One hundred thirty-three strains of Pasteurella haemolytica of both biotypes (90 and 43 strains of biotypes A and T, respectively) and almost all the serotypes were subjected to ribotyping, random amplified polymorphic DNA (RAPD) analysis, and pulsed-field gel electrophoresis (PFGE) analysis for epidemiological purposes. A total of 15 patterns recorded as ribotypes HA to HO were found for the P. haemolytica biotype A strains, with ribotypes HA, HC, and HD being encountered most often (66 strains [74%]); and 20 ribotypes, designated HA′ to HT′, that were clearly distinct from those observed for biotype A strains were observed for strains of biotype T. RAPD analysis generated a total of 44 (designated Rp1 to Rp44) and 15 (designated Rp1′ to Rp 15′) unique RAPD patterns for biogroup A and biogroup T, respectively. Analysis of the data indicated that a given combined ribotype-RAPD pattern could be observed for biotype A strains of different serotypes, whatever the zoological or geographic origin, whereas this was not the case for biotype T strains. PFGE appeared to be more efficient in strain discrimination since selected strains from various zoological or geographical origins harboring the same ribotype-RAPD group were further separated into unique entities.
机译:对这两种生物型的133株溶血巴斯德氏菌(分别为90和43种A和T型)和几乎所有血清型进行了核糖分型,随机扩增多态性DNA(RAPD)分析,以及用于流行病学目的的脉冲场凝胶电泳(PFGE)分析。对于 P,总共发现了15种模式,记录为核糖型HA到HO。溶血性A型生物型菌株,最常见的是核糖型HA,HC和HD(66个菌株[74%]);还有20种核糖型,分别命名为HA'至HT',与生物型A菌株观察到的明显不同。对于T型生物菌株,RAPD分析总共产生了44种(命名为Rp1至Rp44)和15种(命名为Rp1'至Rp1) Rp 15')分别针对生物组A和生物组T的独特RAPD模式。数据分析表明,无论是何种动物或地理起源,对于不同血清型的A型生物菌株,都可以观察到给定的组合核糖型RAPD模式,而对于T型生物菌株则并非如此。 PFGE在菌株判别中似乎更有效,因为来自具有相同核糖型-RAPD组的各种动物或地理起源的选定菌株被进一步分离为独特的实体。

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