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Evaluation of a PCR-Restriction Fragment Length Polymorphism (PCR-RFLP) Assay for Molecular Epidemiological Study of Shiga Toxin-Producing Escherichia coli

机译:评价滋阴毒素大肠杆菌分子流行病学研究的PCR限制性片段长度多态性(PCR-RFLP)测定

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References(46) In this study, we have evaluated our recently developed polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) assay for the molecular subtyping of Shiga toxin-producing Escherichia coli (STEC). A total of 200 STEC strains including O157 (n=100), O26 (n=50), O111 (n=10), and non-O26/O111/O157 (n=40) serogroups isolated during 2005-2006 in Japan, which were identified to be clonally different by pulsed-field gel electrophoresis (PFGE) were further analyzed by the PCR-RFLP assay in comparison to PFGE. Ninety-five of O157, 48 of O26, five of O111 and 19 of non-O26/O111/O157 STEC strains yielded one to three amplicons ranging from 6.0 to 15.5 kb in size by the specific primer set targeting region V which is located in the upstream of stx genes. These strains were classified into 41 (O157), 8 (O26), 4 (O111) and 17 (non-O26/O111/O157) groups based on the RFLP patterns obtained by subsequent restriction digestion, respectively. Although the discriminatory power of PCR-RFLP assay was somewhat less than that of PFGE, it is more convenient for molecular subtyping of STEC strains especially for O157, the most important serogroup implicated in human diseases, as well as to identify the outbreak-associated isolates because of its simplicity, rapidity, ease and good reproducibility.
机译:参考文献(46)在本研究中,我们已经评估了我们最近开发的聚合酶链反应限制片段长度多态性(PCR-RFLP)测定,用于生产滋阴毒素的大肠杆菌(STEC)的分子亚型。总共200的STEC菌株,包括O157(n = 100),O26(n = 50),O111(n = 10)和日本2005-2006期间隔离的非O26 / O111 / O157(n = 40)血清组,通过PCR-RFLP测定与PFGE相比,通过PCR-RFLP测定进一步分析了由脉冲场凝胶电泳(PFGE)被克隆不同的分析。非O26 / O111 / O157 STEC菌株的O111和19的O111和19中的含量为0.111和19的含量为1至3个扩增器,其尺寸范围为6.0至15.5kb,其特定的引物设置靶向区域v STX基因的上游。这些菌株分别分为41(O157),8(O 2 6),4(O111)和17(非O 2 6 / O111 / O157)基团,分别由随后的限制消解获得的RFLP模式。虽然PCR-RFLP测定的歧视力略低于PFGE的差异,但对于STEC菌株特别适用于O157的分子亚级,最重要的血清群体涉及人类疾病的最重要的血清,以及识别爆发相关的分离物由于其简单性,快速,轻松和良好的再现性。

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