纳米孔测序
DNA测序
仆从
计算生物学
基因组
食品安全
仿形(计算机编程)
纳米孔
基因组学
食品微生物学
全基因组测序
生物
数据科学
生物技术
基因组
计算机科学
工程类
遗传学
基因
细菌
食品科学
操作系统
化学工程
作者
Arnav Sharma,Sherry Bansal,Matthew D. Moore,Yaguang Luo,Keith R. Schneider,Boce Zhang
标识
DOI:10.1146/annurev-food-072023-034549
摘要
Foodborne illnesses are a significant global public health challenge, with an estimated 600 million cases annually. Conventional food microbiology methods tend to be laborious and time consuming, pose difficulties in real-time utilization, and can display subpar accuracy or typing capabilities. With the recent advancements in third-generation sequencing and microbial omics, nanopore sequencing technology and its long-read sequencing capabilities have emerged as a promising platform. In recent years, nanopore sequencing technology has been benchmarked for its amplicon sequencing, whole-genome and transcriptome analysis, meta-analysis, and other advanced omics approaches. This review comprehensively covers nanopore sequencing technology's current advances in food safety applications, including outbreak investigation, pathogen surveillance, and antimicrobial resistance profiling. Despite significant progress, ongoing research and development are crucial to overcoming challenges in sequencing chemistry, accuracy, bioinformatics, and real-time adaptive sampling to fully realize nanopore sequencing technology's potential in food safety and food microbiology.
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