首页> 外文期刊>Journal of Clinical Microbiology >Clonal Complexes of Campylobacter jejuni Identified by Multilocus Sequence Typing Correlate with Strain Associations Identified by Multilocus Enzyme Electrophoresis
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Clonal Complexes of Campylobacter jejuni Identified by Multilocus Sequence Typing Correlate with Strain Associations Identified by Multilocus Enzyme Electrophoresis

机译:通过多基因座序列分型鉴定的空肠弯曲菌克隆复合物与多基因座酶电泳鉴定的菌株相关性相关。

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Multilocus sequence typing (MLST) and pulsed-field gel electrophoresis (PFGE) with SmaI were used to subtype 55 isolates of Campylobacter jejuni from a diverse range of human and animal sources previously characterized by multilocus enzyme electrophoresis (MEE). MEE and MLST targeted 11 and 7 loci, respectively, and all loci were unique to each method. MEE, MLST, and PFGE identified 40, 37, and 48 discrete subtypes, respectively, with many of the subtypes occurring only once within the data set. Simpson's indices of diversity were calculated to be 0.979, 0.966, and 0.994 for MEE, MLST, and PFGE, respectively, demonstrating that MEE and MLST had similar discriminatory powers but that PFGE was more discriminatory. Allele diversity was higher in the MLST loci; individual single-locus diversities for the 11 MEE loci and the 7 MLST loci were 0.491 and 0.854, respectively. The clonal complexes recognized by MLST correlated with the strain associations previously recognized by MEE and contained some isolates indistinguishable by PFGE. Many clusters contained isolates from diverse geographical regions and from both humans and animals. These results demonstrate the usefulness of MLST for investigation of the global epidemiology of this important pathogen and illustrate its potential to identify indistinguishable strains or clones in geographically distinct regions.
机译:带有 Sma I的多基因座序列分型(MLST)和脉冲场凝胶电泳(PFGE)被用于从多种人类和动物来源分离空肠弯曲杆菌的55种亚型以前以多基因座酶电泳(MEE)为特征。 MEE和MLST分别针对11和7个基因座,每种方法的所有基因座都是唯一的。 MEE,MLST和PFGE分别标识了40、37和48个离散的子类型,其中许多子类型在数据集中仅出现一次。对于MEE,MLST和PFGE,辛普森的多样性指数经计算分别为0.979、0.966和0.994,这表明MEE和MLST具有相似的辨别力,但PFGE具有更高的辨别力。 MLST基因座中的等位基因多样性较高; 11个MEE基因座和7个MLST基因座的单个单基因座多样性分别为0.491和0.854。 MLST识别的克隆复合物与MEE先前识别的菌株关联相关,并包含一些PFGE无法区分的分离物。许多簇包含来自不同地理区域以及人类和动物的分离株。这些结果证明了MLST在调查这种重要病原体的全球流行病学方面的有用性,并说明了其在地理上不同的地区识别难以区分的菌株或克隆的潜力。

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