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Real-Time Whole-Genome Sequencing for Surveillance of Listeria monocytogenes , France

机译:法国单核细胞增生李斯特菌的实时全基因组测序

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During 2015–2016, we evaluated the performance of whole-genome sequencing (WGS) as a routine typing tool. Its added value for microbiological and epidemiologic surveillance of listeriosis was compared with that for pulsed-field gel electrophoresis (PFGE), the current standard method. A total of 2,743 Listeria monocytogenes isolates collected as part of routine surveillance were characterized in parallel by PFGE and core genome multilocus sequence typing (cgMLST) extracted from WGS. We investigated PFGE and cgMLST clusters containing human isolates. Discrimination of isolates was significantly higher by cgMLST than by PFGE (p<0.001). cgMLST discriminated unrelated isolates that shared identical PFGE profiles and phylogenetically closely related isolates with distinct PFGE profiles. This procedure also refined epidemiologic investigations to include only phylogenetically closely related isolates, improved source identification, and facilitated epidemiologic investigations, enabling identification of more outbreaks at earlier stages. WGS-based typing should replace PFGE as the primary typing method for L. monocytogenes.
机译:在2015–2016年期间,我们评估了全基因组测序(WGS)作为常规打字工具的性能。将其对于李斯特菌病的微生物学和流行病学监测的附加值与当前标准方法脉冲场凝胶电泳(PFGE)的附加值进行了比较。作为常规监测的一部分,共收集了2743株单核细胞增生李斯特菌分离株,并通过PFGE和从WGS中提取的核心基因组多基因座序列分型(cgMLST)进行了并行表征。我们调查了包含人类分离株的PFGE和cgMLST簇。 cgMLST对分离株的区分显着高于PFGE(p <0.001)。 cgMLST区分具有相同PFGE图谱的不相关分离株和具有不同PFGE图谱的系统发育密切相关的分离株。该程序还完善了流行病学调查,使其仅包括在系统发育上密切相关的分离株,改善了病源识别,并促进了流行病学调查,从而能够在早期阶段识别更多的暴发。基于WGS的分型应取代PFGE作为单核细胞增生李斯特氏菌的主要分型方法。

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