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检测并分子特征分析与美国爆发疫情相关的牡蛎中的诺如病毒。

Detection and molecular characterization of norovirus from oysters implicated in outbreaks in the US.

机构信息

FDA, Division of Seafood Safety, Gulf Coast Seafood Laboratory, Dauphin Island, AL, 36528, USA.

FDA, Division of Seafood Safety, Gulf Coast Seafood Laboratory, Dauphin Island, AL, 36528, USA.

出版信息

Food Microbiol. 2016 Oct;59:76-84. doi: 10.1016/j.fm.2016.05.009. Epub 2016 May 15.

Abstract

Human noroviruses are the leading cause of non-bacterial shellfish associated gastroenteritis. Here we report on the detection and characterization of norovirus (NoV) in shellfish associated outbreaks. Requests were received from state and federal officials for technical assistance in the analysis of shellfish for NoV and male specific coliphage (MSC; an enteric virus surrogate) during the years 2009 thru 2014. In outbreaks where NoV was detected, genogroup II (GII) levels ranged from 2.4 to 82.0 RT-qPCR U/g of digestive diverticula (DD) while NoV genogroup I (GI) levels ranged from 1.5 to 29.8 RT-qPCR U/g of DD. Murine norovirus extraction efficiencies ranged between 50 and 85%. MSC levels ranged from <6 to 80 PFU/100 g. Phylogenetic analysis of the outbreak sequences revealed strains clustering with GI.8, GI.4, GII.3, GII.4, GII.7, and GII.21. There was 100% homology between the shellfish and clinical strains occurring in 2 of 8 outbreaks. Known shellfish consumption data demonstrated probable infectious particles ingested as low as 12. These investigations demonstrate effective detection, quantification, and characterization of NoV in shellfish associated with illness.

摘要

人类诺如病毒是细菌性贝类相关肠胃炎的主要原因。本研究报告了贝类相关暴发中诺如病毒(NoV)的检测和特征。在 2009 年至 2014 年期间,州和联邦官员请求提供技术援助,以分析贝类中的 NoV 和雄性特异性噬菌体(MSC;一种肠道病毒替代物)。在检测到 NoV 的暴发中,基因型 II(GII)的水平范围为 2.4 至 82.0 RT-qPCR U/g 的消化憩室(DD),而 NoV 基因型 I(GI)的水平范围为 1.5 至 29.8 RT-qPCR U/g 的 DD。鼠诺如病毒提取效率在 50%至 85%之间。MSC 的水平范围为 <6 至 80 PFU/100 g。暴发序列的系统发育分析显示,菌株与 GI.8、GI.4、GII.3、GII.4、GII.7 和 GII.21 聚类。在 8 次暴发中的 2 次中,贝类和临床菌株之间存在 100%的同源性。已知的贝类消费数据表明,摄入的传染性颗粒低至 12 个就可能导致感染。这些研究表明,能够有效检测、定量和鉴定与贝类相关疾病的 NoV。

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