首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Randomly Amplified Polymorphic DNA Genotyping of Serogroup A Meningococci Yields Results Similar to Those Obtained by Multilocus Enzyme Electrophoresis and Reveals New Genotypes
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Randomly Amplified Polymorphic DNA Genotyping of Serogroup A Meningococci Yields Results Similar to Those Obtained by Multilocus Enzyme Electrophoresis and Reveals New Genotypes

机译:A群脑膜炎球菌随机扩增多态性DNA基因分型的结果与多基因座酶电泳获得的结果相似并揭示了新的基因型

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摘要

Randomly amplified polymorphic DNA (RAPD) genotyping was applied to one representative strain of each of the 84 electrophoretic types (ETs) of Neisseria meningitidis serogroup A previously defined by multilocus enzyme electrophoresis (MEE) (J.-F. Wang et al., Infect. Immun. 60:5267–5282, 1992). Twenty-seven additional isolates comprising six ETs were also tested. MEE and RAPD genotyping yielded similar dendrograms at the subgroup level. Similar results were obtained by both methods for 18 serogroup A meningococci isolated in The Netherlands between 1989 and 1993. Ten of these isolates defined a new subgroup, designated subgroup IX. One isolate belonged to the ET-5 complex, normally associated with serogroup B strains (D. A. Caugant et al., Proc. Natl. Acad. Sci. USA 83:4927–4931, 1986). By RAPD genotyping, meningococci can be linked to previously characterized genotypes by using a computerized database, and dendrograms based on cluster analyses can easily be generated. RAPD analysis offers advantages over MEE since intermediate numbers of isolates of serogroup A meningococci can quickly be assigned to known subgroups and new subgroups can be defined.
机译:将随机扩增的多态性DNA(RAPD)基因分型应用于先前由多基因座酶电泳(MEE)定义的脑膜炎奈瑟氏球菌血清群A的84种电泳类型(ET)中的每一种的代表性菌株(J.-F. Wang等,Infect Immun。60:5267–5282,1992)。还测试了包含67个ET的27个其他分离株。 MEE和RAPD基因分型在亚组水平产生相似的树状图。两种方法在1989年至1993年间在荷兰分离出的18个A群脑膜炎球菌均获得了相似的结果。其中10个分离株定义了一个新的亚组,称为IX组。一种分离物属于ET-5复合物,通常与B血清群菌株有关(D. A. Caugant等人,美国国家科学院院刊83:4927–4931,1986)。通过RAPD基因分型,可以使用计算机数据库将脑膜炎球菌与先前表征的基因型相关联,并且可以轻松生成基于聚类分析的树状图。 RAPD分析提供了优于MEE的优势,因为可以将中等数量的A群脑膜炎球菌分离株快速分配给已知亚组,并且可以定义新的亚组。

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