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Metavirome Sequencing to Evaluate Norovirus Diversity in Sewage and Related Bioaccumulated Oysters ArchiMer
Strubbia, Sofia; Schaeffer, Julien; Oude Munnink, Bas B.; Besnard, Alban; Phan, My V. T.; Nieuwenhuijse, David F.; De Graaf, Miranda; Schapendonk, Claudia M. E.; Wacrenier, Candice; Cotten, Matthew; Koopmans, Marion P. G.; Le Guyader, Soizick.
Metagenomic sequencing is a promising method to determine the virus diversity in environmental samples such as sewage or shellfish. However, to identify the short RNA genomes of human enteric viruses among the large diversity of nucleic acids present in such complex matrices, method optimization is still needed. This work presents methodological developments focused on norovirus, a small ssRNA non-enveloped virus known as the major cause of human gastroenteritis worldwide and frequently present in human excreta and sewage. Different elution protocols were applied and Illumina MiSeq technology were used to study norovirus diversity. A double approach, agnostic deep sequencing and a capture-based approach (VirCapSeq-VERT) was used to identify norovirus in...
Tipo: Text Palavras-chave: Norovirus; Sewage; Oysters; Metagenomic sequencing; Metavirome.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00586/69765/67656.pdf
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Novel opportunities for NGS-based one health surveillance of foodborne viruses ArchiMer
Desdouits, Marion; De Graaf, Miranda; Strubbia, Sofia; Oude Munnink, Bas B.; Kroneman, Annelies; Le Guyader, Soizick; Koopmans, Marion P. G..
Foodborne viral infections rank among the top 5 causes of disease, with noroviruses and hepatitis A causing the greatest burden globally. Contamination of foods by infected food handlers or through environmental pollution are the main sources of foodborne illness, with a lesser role for consumption of products from infected animals. Viral partial genomic sequencing has been used for more than two decades to track foodborne outbreaks and whole genome or metagenomics next-generation-sequencing (NGS) are new additions to the toolbox of food microbiology laboratories. We discuss developments in the field of targeted and metagenomic NGS, with an emphasis on application in food virology, the challenges and possible solutions towards future routine application
Tipo: Text Palavras-chave: Next-generation sequencing; Metagenomics; Foodborne virus; Food virology; Human enteric virus; Norovirus.
Ano: 2020 URL: https://archimer.ifremer.fr/doc/00641/75330/75988.pdf
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Sustained fecal-oral human-to-human transmission following a zoonotic event ArchiMer
De Graaf, Miranda; Beck, Relja; Caccio, Simone M.; Duim, Birgitta; Fraaij, Pieter L. A.; Le Guyader, Soizick; Lecuit, Marc; Le Pendu, Jacques; De Wit, Emmie; Schultsz, Constance.
Bacterial, viral and parasitic zoonotic pathogens that transmit via the fecal-oral route have a major impact on global health. However, the mechanisms underlying the emergence of such pathogens from the animal reservoir and their persistence in the human population are poorly understood. Here, we present a framework of human-to-human transmission of zoonotic pathogens that considers the factors relevant for fecal-oral human-to-human transmission route at the levels of host, pathogen, and environment. We discuss current data gaps and propose future research directions.
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Ano: 2017 URL: http://archimer.ifremer.fr/doc/00358/46959/46873.pdf
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