A Metagenomic Survey of Virological Hazards in Market-Ready Oysters

IF 4.1 2区 农林科学 Q2 ENVIRONMENTAL SCIENCES Food and Environmental Virology Pub Date : 2025-01-10 DOI:10.1007/s12560-024-09630-2
René A. M. Dirks, Nils P. Sosef, Johanna T. M. Zwartkruis-Nahuis, Marijke M. A. Thijssen, Claudia C. C. Jansen, Ingeborg L. A. Boxman
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Abstract

Viral contamination of bivalve molluscs, such as oysters, is a well-recognized food safety risk. The aim of this study was to assess virological hazards in market-ready oysters on the Dutch market. Non-targeted metagenome analysis was first performed on norovirus spiked-in samples showing linear and sensitive detection of norovirus GI.2 and GII.4 down to 14 and 5 genome copies per reaction, respectively. Subsequently, metagenomic measurements were performed to detect vertebrate viral genomes present in 24 undepurated B-area samples and 144 market-ready oyster samples taken in November up to and including February of the years 2015–2021. Genome sequences from fifteen viral species were identified in market-ready oysters which are associated with infections in humans and were detected above the genomic coverage threshold (5%) applied. Among these, the two genera from the Caliciviridae family, norovirus and sapovirus were detected at high prevalence (44 and 30%). Additionally, adeno-associated dependoparvovirus A and B as well as Aichi virus A and B (ribo)nucleic acids were detected (42, 33, 6, and 11%). Nucleic acids from virus species in oysters included potentially hazardous Picobirnavirus, Anellovirus, and multiple Circoviridae and Genomoviridae species. By integrating metagenome analysis into the monitoring process, researchers, food producers and regulatory bodies can gain valuable insights into the viral communities present in the food chain. This allows for the detection of potential pathogenic hazards at an early stage, providing an opportunity for tailored monitoring programs and targeted interventions to maintain the sanitary quality of the production area and safeguard public health.

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市售牡蛎病毒学危害的宏基因组调查
病毒污染双壳类软体动物,如牡蛎,是公认的食品安全风险。本研究的目的是评估荷兰市场上已上市牡蛎的病毒学危害。首先对诺如病毒刺入样本进行非靶向宏基因组分析,显示诺如病毒GI.2和gi .4的线性和敏感检测,每次反应分别减少到14和5个基因组拷贝。随后,进行了元基因组测量,以检测2015-2021年11月至2月期间采集的24个未净化的b区样本和144个上市牡蛎样本中存在的脊椎动物病毒基因组。在市售牡蛎中鉴定了15种病毒的基因组序列,这些病毒与人类感染有关,并且检测到的基因组覆盖率高于所应用的阈值(5%)。其中,冠状病毒科2属诺如病毒和萨波病毒的感染率较高(分别为44%和30%)。此外,检测到腺相关依赖细小病毒A和B以及爱知病毒A和B(核糖)核酸(42%,33%,6%和11%)。从牡蛎病毒种中提取的核酸包括潜在危险的小核糖核酸病毒、无线虫病毒以及多种环状病毒科和基因组病毒科。通过将宏基因组分析整合到监测过程中,研究人员、食品生产商和监管机构可以获得对食物链中存在的病毒群落的宝贵见解。这样就可以在早期阶段发现潜在的致病危险,从而为制定有针对性的监测方案和采取有针对性的干预措施提供机会,以维持生产区的卫生质量,保障公众健康。
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来源期刊
Food and Environmental Virology
Food and Environmental Virology ENVIRONMENTAL SCIENCES-MICROBIOLOGY
CiteScore
6.50
自引率
2.90%
发文量
35
审稿时长
1 months
期刊介绍: Food and Environmental Virology publishes original articles, notes and review articles on any aspect relating to the transmission of pathogenic viruses via the environment (water, air, soil etc.) and foods. This includes epidemiological studies, identification of novel or emerging pathogens, methods of analysis or characterisation, studies on survival and elimination, and development of procedural controls for industrial processes, e.g. HACCP plans. The journal will cover all aspects of this important area, and encompass studies on any human, animal, and plant pathogenic virus which is capable of transmission via the environment or food.
期刊最新文献
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