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通过高通量实时 PCR 鉴定欧洲 30 种主要的单核细胞增生李斯特菌克隆群。

Identification by High-Throughput Real-Time PCR of 30 Major Circulating Listeria monocytogenes Clonal Complexes in Europe.

机构信息

ANSES, European Union Reference Laboratory for Listeria monocytogenes, Laboratory for Food Safety, Salmonella and Listeria Unit, University of Paris-Est, Maisons-Alfort, France.

ANSES, Ploufragan/Plouzané/Niort Laboratory, Viral Genetics and Bio-Security Unit, Université Européenne de Bretagne, Ploufragan, France.

出版信息

Microbiol Spectr. 2023 Jun 15;11(3):e0395422. doi: 10.1128/spectrum.03954-22. Epub 2023 May 9.

Abstract

Listeria monocytogenes is a ubiquitous bacterium that causes a foodborne illness, listeriosis. Most strains can be classified into major clonal complexes (CCs) that account for the majority of outbreaks and sporadic cases in Europe. In addition to the 20 CCs known to account for the majority of human and animal clinical cases, 10 CCs are frequently reported in food production, thereby posing a serious challenge for the agrifood industry. Therefore, there is a need for a rapid and reliable method to identify these 30 major CCs. The high-throughput real-time PCR assay presented here provides accurate identification of these 30 CCs and eight genetic subdivisions within four CCs, splitting each CC into two distinct subpopulations, along with the molecular serogroup of a strain. Based on the BioMark high-throughput real-time PCR system, our assay analyzes 46 strains against 40 real-time PCR arrays in a single experiment. This European study (i) designed the assay from a broad panel of 3,342 L. monocytogenes genomes, (ii) tested its sensitivity and specificity on 597 sequenced strains collected from 24 European countries, and (iii) evaluated its performance in the typing of 526 strains collected during surveillance activities. The assay was then optimized for conventional multiplex real-time PCR for easy implementation in food laboratories. It has already been used for outbreak investigations. It represents a key tool for assisting food laboratories to establish strain relatedness with human clinical strains during outbreak investigations and for helping food business operators by improving their microbiological management plans. Multilocus sequence typing (MLST) is the reference method for Listeria monocytogenes typing but is expensive and takes time to perform, from 3 to 5 days for laboratories that outsource sequencing. Thirty major MLST clonal complexes (CCs) are circulating in the food chain and are currently identifiable only by sequencing. Therefore, there is a need for a rapid and reliable method to identify these CCs. The method presented here enables the rapid identification, by real-time PCR, of 30 CCs and eight genetic subdivisions within four CCs, splitting each CC into two distinct subpopulations. The assay was then optimized on different conventional multiplex real-time PCR systems for easy implementation in food laboratories. The two assays will be used for frontline identification of L. monocytogenes isolates prior to whole-genome sequencing. Such assays are of great interest for all food industry stakeholders and public agencies for tracking L. monocytogenes food contamination.

摘要

单增李斯特菌是一种普遍存在的细菌,可引起食源性疾病李斯特菌病。大多数菌株可分为主要克隆群(CC),这些 CC 占欧洲大多数暴发和散发病例的大部分。除了已知的 20 个占人类和动物临床病例大部分的 CC 外,还有 10 个 CC 经常在食品生产中报告,这对农业食品行业构成了严重挑战。因此,需要一种快速可靠的方法来识别这 30 个主要 CC。本研究提出的高通量实时 PCR 检测方法可准确识别这 30 个 CC 和四个 CC 内的 8 个遗传亚群,将每个 CC 分为两个不同的亚群,并确定菌株的分子血清群。基于 BioMark 高通量实时 PCR 系统,我们的检测方法在单次实验中对 46 株菌进行了 40 个实时 PCR 阵列的分析。这项欧洲研究(i)从广泛的 3342 个单增李斯特菌基因组中设计了该检测方法,(ii)在来自 24 个欧洲国家的 597 株测序菌株上测试了其敏感性和特异性,(iii)在对 526 株在监测活动中收集的菌株进行的分型中评估了其性能。然后,该检测方法被优化为常规多重实时 PCR,以便于在食品实验室中实施。它已经用于暴发调查。它是协助食品实验室在暴发调查中建立与人类临床菌株的菌株相关性的重要工具,并通过改进食品企业经营者的微生物管理计划来帮助他们。多位点序列分型(MLST)是单增李斯特菌分型的参考方法,但成本高,耗时 3 至 5 天,对于外包测序的实验室而言。在食物链中循环的 30 个主要 MLST 克隆群(CC)目前只能通过测序来识别。因此,需要一种快速可靠的方法来识别这些 CC。本研究提出的方法通过实时 PCR 快速鉴定 30 个 CC 和四个 CC 内的 8 个遗传亚群,将每个 CC 分为两个不同的亚群。然后,该检测方法在不同的常规多重实时 PCR 系统上进行了优化,以便于在食品实验室中实施。这两种检测方法将用于在全基因组测序之前对单增李斯特菌分离株进行一线鉴定。此类检测方法对于所有食品行业利益相关者和公共机构跟踪单增李斯特菌食品污染非常有意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/366b/10269651/590a70cf95f7/spectrum.03954-22-f001.jpg

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