enteric yersiniosis

  • 文章类型: Journal Article
    肠孢子虫病,欧洲第三大最常见的食源性人畜共患病,主要由病原小肠结肠炎耶尔森氏菌引起。在法国,耶尔森氏菌病微生物监测在耶尔森氏菌国家参考实验室(YNRL)进行。自2017年以来,分离株的特征是全基因组测序(WGS),然后是500个基因的耶尔森氏菌-cgMLST。我们在这里报告了2017-2021年期间基于WGS的小肠结肠炎Y分离株监测数据。YNRL表征了7,642Y。小肠结肠炎菌株分布在来自谱系1Aa和1Ab的2,497个非致病性分离株中,和属于8个致病谱系的5145个标本。在病原分离物中,谱系4最常见(87.2%),其次是谱系2/3-9b(10.6%),2/3-5a(1.2%),2/3-9a(0.6%),3-3b,3-3c,1B,和3-3d(每个0.1%)。重要的是,我们基于一种新的分型方法开发了一种常规监测系统,该方法包括对小肠结肠炎Y种具有特异性的1,727个基因核心基因组多位点序列分型(cgMLST),然后进行分离聚类。确定并固定了分离株聚类的等位基因距离(AD)阈值:谱系4、2/3-5a的AD≤5,和2/3-9a,谱系2/3-9b的AD≤3。2019年在常规监测中实施了聚类计划,以检测致病性分离株的基因组聚类。总的来说,确定了至少2个分离株的419个簇,代表2019年至2021年间表征的3,503株分离株中的2,504株。大多数簇(n=325)包含2至5个分离物。新的分型方法被证明可用于异常病例分组的分子研究以及常规监测中基因组簇的检测。
    目的:我们在这里描述了用于法国小肠结肠炎耶尔森氏菌感染的分子监测的新分型方法,该方法基于对小肠结肠炎耶尔森氏菌特异的新型核心基因组多位点序列分型(cgMLST)物种。该方法可以可靠地鉴定致病性小肠结肠炎耶氏亚种,并以较高的鉴别力比较分离株。在2017年至2021年之间,鉴定了属于8个谱系的5,145个致病性分离株,到目前为止,谱系4是最常见的,其次是谱系2/3-9b。实现了一个聚类程序,和检测阈值通过对三个不寻常的小肠结肠炎耶氏球菌感染组的分子和流行病学调查进行交叉验证。常规的分子监测系统已经能够检测基因组簇,导致流行病学调查。
    Enteric yersiniosis, the third most common food-borne zoonosis in Europe, is mainly caused by the pathogen Yersinia enterocolitica. In France, the yersiniosis microbiological surveillance is conducted at the Yersinia National Reference Laboratory (YNRL). Since 2017, isolates have been characterized by whole genome sequencing (WGS) followed by a 500-gene Yersinia-cgMLST. We report here the data of the WGS-based surveillance on Y. enterocolitica isolates for the 2017-2021 period. The YNRL characterized 7,642 Y. enterocolitica strains distributed in 2,497 non-pathogenic isolates from lineages 1Aa and 1Ab, and 5,145 specimens belonging to 8 pathogenic lineages. Among pathogenic isolates, lineage 4 was the most common (87.2%) followed by lineages 2/3-9b (10.6%), 2/3-5a (1.2%), 2/3-9a (0.6%), 3-3b, 3-3c, 1B, and 3-3d (0.1% per each). Importantly, we developed a routine surveillance system based on a new typing method consisting of a 1,727-genes core genome Multilocus Sequence Typing (cgMLST) specific to the species Y. enterocolitica followed by isolate clustering. Thresholds of allelic distances (AD) were determined and fixed for the clustering of isolates: AD ≤ 5 for lineages 4, 2/3-5a, and 2/3-9a, and AD ≤ 3 for lineage 2/3-9b. Clustering programs were implemented in 2019 in routine surveillance to detect genomic clusters of pathogenic isolates. In total, 419 clusters with at least 2 isolates were identified, representing 2,504 of the 3,503 isolates characterized between 2019 and 2021. Most clusters (n = 325) comprised 2 to 5 isolates. The new typing method proved to be useful for the molecular investigation of unusual grouping of cases as well as for the detection of genomic clusters in routine surveillance.
    OBJECTIVE: We describe here the new typing method used for molecular surveillance of Yersinia enterocolitica infections in France based on a novel core genome Multilocus Sequence Typing (cgMLST) specific to Y. enterocolitica species. This method can reliably identify the pathogenic Y. enterocolitica subspecies and compare the isolates with a high discriminatory power. Between 2017 and 2021, 5,145 pathogenic isolates belonging to 8 lineages were characterized and lineage 4 was by far the most common followed by lineage 2/3-9b. A clustering program was implemented, and detection thresholds were cross-validated by the molecular and epidemiological investigation of three unusual groups of Y. enterocolitica infections. The routine molecular surveillance system has been able to detect genomic clusters, leading to epidemiological investigations.
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  • 文章类型: Journal Article
    假结核耶尔森氏菌是一种引起轻度肠炎的肠道病原体,可导致儿童肠系膜结肠炎和老年患者败血症。大多数病例是零星的,但是已经在不同的国家描述了疫情。我们首次报道了法国的假结核克隆性爆发,这发生在2020年。基于食物查询的流行病学调查指出,食用西红柿是可疑的感染源。耶尔森氏菌国家参考实验室(YNRL)开发了一种新的cgMLST方案,该方案具有针对假结核Y的1,921个基因,可识别与爆发相关的分离株聚集,并允许实时进行分子分型。此外,该方法允许在2020年早期对属于该集群的分离株进行回顾性鉴定.这种方法,这不需要特定的生物信息学技能,现在已在YNRL中系统地使用,并被证明具有出色的歧视性,并可供科学界使用。重要性我们在这里描述了一种新的核心基因组MLST方法,可以实时识别,第一次在法国,Y.假结核克隆性爆发发生在2020年夏季科西嘉岛。我们的方法可以支持流行病学和微生物学调查,以建立感染密切相关的假结核分枝杆菌分离株的患者之间的联系。并确定潜在的感染源。此外,我们为科学界提供了这种方法。
    Yersinia pseudotuberculosis is an enteric pathogen causing mild enteritis that can lead to mesenteric adenitis in children and septicemia in elderly patients. Most cases are sporadic, but outbreaks have already been described in different countries. We report for the first time a Y. pseudotuberculosis clonal outbreak in France, that occurred in 2020. An epidemiological investigation based on food queries pointed toward the consumption of tomatoes as the suspected source of infection. The Yersinia National Reference Laboratory (YNRL) developed a new cgMLST scheme with 1,921 genes specific to Y. pseudotuberculosis that identified the clustering of isolates associated with the outbreak and allowed to perform molecular typing in real time. In addition, this method allowed to retrospectively identify isolates belonging to this cluster from earlier in 2020. This method, which does not require specific bioinformatic skills, is now used systematically at the YNRL and proves to display an excellent discriminatory power and is available to the scientific community. IMPORTANCE We describe in here a novel core-genome MLST method that allowed to identify in real time, and for the first time in France, a Y. pseudotuberculosis clonal outbreak that took place during the summer 2020 in Corsica. Our method allows to support epidemiological and microbiological investigations to establish a link between patients infected with closely associated Y. pseudotuberculosis isolates, and to identify the potential source of infection. In addition, we made this method available for the scientific community.
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  • 文章类型: Journal Article
    Yersinia pseudotuberculosis, Y. enterocolitica and Y. pestis are pathogenic bacteria capable of causing disease in humans by growing extracellularly in lymph nodes and during systemic infections. While the capacity of these bacteria to invade, replicate, and survive within host cells has been known for long, it is only in recent years that their intracellular stages have been explored in more detail. Current evidence suggests that pathogenic Yersinia are capable of activating autophagy in both phagocytic and epithelial cells, subverting autophagosome formation to create a niche supporting bacterial intracellular replication. In this review, we discuss recent results opening novel perspectives to the understanding of intimate host-pathogens interactions taking place during enteric yersiniosis and plague.
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