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美国联邦跨部门基因组学协作组织将全基因组测序用于食品和饲料安全领域

Use of Whole Genome Sequencing by the Federal Interagency Collaboration for Genomics for Food and Feed Safety in the United States.

作者信息

Stevens Eric L, Carleton Heather A, Beal Jennifer, Tillman Glenn E, Lindsey Rebecca L, Lauer A C, Pightling Arthur, Jarvis Karen G, Ottesen Andrea, Ramachandran Padmini, Hintz Leslie, Katz Lee S, Folster Jason P, Whichard Jean M, Trees Eija, Timme Ruth E, McDERMOTT Patrick, Wolpert Beverly, Bazaco Michael, Zhao Shaohua, Lindley Sabina, Bruce Beau B, Griffin Patricia M, Brown Eric, Allard Marc, Tallent Sandra, Irvin Kari, Hoffmann Maria, Wise Matt, Tauxe Robert, Gerner-Smidt Peter, Simmons Mustafa, Kissler Bonnie, Defibaugh-Chavez Stephanie, Klimke William, Agarwala Richa, Lindsay James, Cook Kimberly, Austerman Suelee Robbe, Goldman David, McGARRY Sherri, Hale Kis Robertson, Dessai Uday, Musser Steven M, Braden Chris

机构信息

U.S. Food and Drug Administration, Center for Food Safety and Applied Nutrition, College Park, Maryland 20740.

Centers for Disease Control and Prevention, Division of Foodborne, Waterborne and Environmental Diseases, National Center for Emerging and Zoonotic Infectious Diseases, Atlanta, Georgia 30329.

出版信息

J Food Prot. 2022 May 1;85(5):755-772. doi: 10.4315/JFP-21-437.

Abstract

ABSTRACT

This multiagency report developed by the Interagency Collaboration for Genomics for Food and Feed Safety provides an overview of the use of and transition to whole genome sequencing (WGS) technology for detection and characterization of pathogens transmitted commonly by food and for identification of their sources. We describe foodborne pathogen analysis, investigation, and harmonization efforts among the following federal agencies: National Institutes of Health; Department of Health and Human Services, Centers for Disease Control and Prevention (CDC) and U.S. Food and Drug Administration (FDA); and the U.S. Department of Agriculture, Food Safety and Inspection Service, Agricultural Research Service, and Animal and Plant Health Inspection Service. We describe single nucleotide polymorphism, core-genome, and whole genome multilocus sequence typing data analysis methods as used in the PulseNet (CDC) and GenomeTrakr (FDA) networks, underscoring the complementary nature of the results for linking genetically related foodborne pathogens during outbreak investigations while allowing flexibility to meet the specific needs of Interagency Collaboration partners. We highlight how we apply WGS to pathogen characterization (virulence and antimicrobial resistance profiles) and source attribution efforts and increase transparency by making the sequences and other data publicly available through the National Center for Biotechnology Information. We also highlight the impact of current trends in the use of culture-independent diagnostic tests for human diagnostic testing on analytical approaches related to food safety and what is next for the use of WGS in the area of food safety.

摘要

摘要

这份由食品和饲料安全基因组学跨部门合作组织编写的多机构报告概述了全基因组测序(WGS)技术在检测和鉴定常见的通过食品传播的病原体及其来源方面的应用和过渡情况。我们描述了以下联邦机构之间在食源性病原体分析、调查及协调方面所做的努力:美国国立卫生研究院;卫生与公众服务部、疾病控制与预防中心(CDC)以及美国食品药品监督管理局(FDA);还有美国农业部、食品安全与检验局、农业研究局以及动植物卫生检验局。我们介绍了脉冲网络(CDC)和基因组追踪网络(FDA)中使用的单核苷酸多态性、核心基因组及全基因组多位点序列分型数据分析方法,强调了在疫情调查期间,这些结果在关联基因相关的食源性病原体方面的互补性,同时具备灵活性以满足跨部门合作伙伴的特定需求。我们着重介绍了如何将WGS应用于病原体特征描述(毒力和抗菌药物耐药性概况)及溯源工作,并通过美国国立生物技术信息中心公开序列及其他数据来提高透明度。我们还强调了当前在人类诊断检测中使用非培养诊断测试的趋势对食品安全相关分析方法的影响,以及WGS在食品安全领域的未来发展方向。

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