State Key Laboratory of Infectious Disease Prevention and Control, National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, 102206, China.
Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, Hangzhou, 310003, China.
Front Med. 2018 Feb;12(1):23-33. doi: 10.1007/s11684-017-0607-7. Epub 2018 Jan 9.
Two decades have passed since the first bacterial whole-genome sequencing, which provides new opportunity for microbial genome. Consequently, considerable genetic diversity encoded by bacterial genomes and among the strains in the same species has been revealed. In recent years, genome sequencing techniques and bioinformatics have developed rapidly, which has resulted in transformation and expedited the application of strategy and methodology for bacterial genome comparison used in dissection of infectious disease epidemics. Bacterial whole-genome sequencing and bioinformatic computing allow genotyping to satisfy the requirements of epidemiological study in disease control. In this review, we outline the significance and summarize the roles of bacterial genome sequencing in the context of bacterial disease control and prevention.We discuss the applications of bacterial genome sequencing in outbreak detection, source tracing, transmission mode discovery, and new epidemic clone identification. Wide applications of genome sequencing and data sharing in infectious disease surveillance networks will considerably promote outbreak detection and early warning to prevent the dissemination of bacterial diseases.
自首次进行细菌全基因组测序以来,已经过去了二十年,这为微生物基因组学提供了新的机会。因此,已经揭示了细菌基因组和同一物种菌株之间编码的相当大的遗传多样性。近年来,基因组测序技术和生物信息学发展迅速,导致了策略和方法的转变,并加速了用于剖析传染病流行的细菌基因组比较的应用。细菌全基因组测序和生物信息计算允许基因分型满足疾病控制中流行病学研究的要求。在这篇综述中,我们概述了细菌基因组测序在细菌疾病控制和预防方面的意义,并总结了其作用。我们讨论了细菌基因组测序在爆发检测、溯源、传播模式发现和新流行克隆识别中的应用。基因组测序在传染病监测网络中的广泛应用和数据共享将极大地促进爆发检测和预警,以防止细菌疾病的传播。