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Precision Food Safety: a Paradigm Shift in Detection and Control of Foodborne Pathogens

机译:精密食品安全:食源性病原体检测和控制的范式转变

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The implementation of whole-genome sequencing in food safety has revolutionized foodborne pathogen tracking and outbreak investigations. The vast amounts of genomic data that are being produced through ongoing surveillance efforts continue advancing our understanding of pathogen diversity and genome biology. Produced genomic data are also supporting the use of metagenomics and metatranscriptomics for detection and functional characterization of microbiological hazards in foods and food processing environments. In addition to that, many studies have shown that metabolic and pathogenic potential, antimicrobial resistance, and other phenotypes relevant to food safety can be predicted from whole-genome sequences, omitting the need for multiple laboratory tests. Nevertheless, further work in the area of functional inference is necessary to enable accurate interpretation of functional information inferred from genomic and metagenomic data, as well as real-time detection and tracking of high-risk pathogen subtypes and microbiomes.
机译:食品安全中全基因组测序的实施彻底改变了食源性病原体跟踪和爆发研究。通过正在进行的监视努力正在生产的大量基因组数据继续推进我们对病原体多样性和基因组生物学的理解。产生的基因组数据也支持使用偏见组和MetaTransfriptomics进行食物和食品加工环境中微生物危害的检测和功能性。除此之外,许多研究表明,可以从全基因组序列预测代谢和致病性潜力,抗微生物抗性和与食品安全相关的其他表型,省略对多种实验室测试的需要。然而,在功能性推断的进一步工作是必要的,以便能够准确地解释从基因组和偏见数据推断的功能信息,以及高危病原菌亚型和微生物的实时检测和跟踪。

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