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首页> 外文期刊>International Journal of Microbiology >Polymorphic Amplified Typing Sequences and Pulsed-Field Gel Electrophoresis Yield Comparable Results in the Strain Typing of a Diverse Set of Bovine Escherichia coli O157:H7 Isolates
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Polymorphic Amplified Typing Sequences and Pulsed-Field Gel Electrophoresis Yield Comparable Results in the Strain Typing of a Diverse Set of Bovine Escherichia coli O157:H7 Isolates

机译:多态性放大分型序列和脉冲场凝胶电泳产量可比结果的不同类型的牛大肠杆菌O157:H7分离株的菌株分型

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摘要

Polymorphic amplified typing sequences (PATS), a PCR-based Escherichia coli O157:H7 (O157) strain typing system, targets insertions-deletions and single nucleotide polymorphisms at XbaI and AvrII restriction enzyme sites, respectively, and the virulence genes (stx1, stx2, eae, hlyA) in the O157 genome. In this study, the ability of PATS to discriminate O157 isolates associated with cattle was evaluated. An in-depth comparison of 25 bovine O157 isolates, from different geographic locations across Northwest United States, showed that about 85% of these isolates shared the same dendogram clade by PATS and pulsed-field gel electrophoresis (PFGE), irrespective of the restriction enzyme sites targeted. The Pearson's correlation coefficient, r, calculated at about 0.4, 0.3, and 0.4 for XbaI-based, AvrII-based and combined-enzymes PATS and PFGE similarities, respectively, indicating that these profiles shared a good but not high correlation, an expected inference given that the two techniques discriminate differently. Isolates that grouped differently were better matched to their locations using PATS. Overall, PATS discriminated the bovine O157 isolates without interpretive biases or sophisticated analytical software, and effectively complemented while not duplicating PFGE. With its quick turnaround time, PATS has excellent potential as a convenient tool for early epidemiological or food safety investigations, enabling rapid notification/implementation of quarantine measures.
机译:多态性扩增分型序列(PATS)是一种基于PCR的大肠杆菌O157:H7(O157)菌株分型系统,分别针对XbaI和AvrII限制酶位点以及毒力基因(stx1,stx2)的插入缺失和单核苷酸多态性(eae,hlyA))。在这项研究中,评估了PATS区分与牛相关的O157分离株的能力。深入比较了来自美国西北部不同地理位置的25个牛O157分离株,发现这些分离株中约有85%通过PATS和脉冲场凝胶电泳(PFGE)共享相同的树状图进化枝,而与限制酶无关定位的网站。对于基于XbaI,基于AvrII以及组合酶的PATS和PFGE相似度,分别计算出Pearson相关系数r约为0.4、0.3和0.4,这表明这些配置文件具有良好的相关性但不是很高的相关性,这是预期的推断鉴于这两种技术的区别不同。使用PATS,对不同分组的隔离区可以更好地匹配其位置。总体而言,PATS可以区分牛O157分离株,而没有解释偏见或使用复杂的分析软件,并且可以有效补充,而不会重复PFGE。凭借快速的周转时间,PATS具有作为早期流行病学或食品安全调查的便捷工具的巨大潜力,能够迅速通知/实施检疫措施。

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