Sekse Camilla, Holst-Jensen Arne, Dobrindt Ulrich, Johannessen Gro S, Li Weihua, Spilsberg Bjørn, Shi Jianxin
Department of Animal Health and Food Safety, Norwegian Veterinary Institute, Oslo, Norway.
Institute of Hygiene, University of Münster, Münster, Germany.
Front Microbiol. 2017 Oct 20;8:2029. doi: 10.3389/fmicb.2017.02029. eCollection 2017.
High-throughput sequencing (HTS) is becoming the state-of-the-art technology for typing of microbial isolates, especially in clinical samples. Yet, its application is still in its infancy for monitoring and outbreak investigations of foods. Here we review the published literature, covering not only bacterial but also viral and Eukaryote food pathogens, to assess the status and potential of HTS implementation to inform stakeholders, improve food safety and reduce outbreak impacts. The developments in sequencing technology and bioinformatics have outpaced the capacity to analyze and interpret the sequence data. The influence of sample processing, nucleic acid extraction and purification, harmonized protocols for generation and interpretation of data, and properly annotated and curated reference databases including non-pathogenic "natural" strains are other major obstacles to the realization of the full potential of HTS in analytical food surveillance, epidemiological and outbreak investigations, and in complementing preventive approaches for the control and management of foodborne pathogens. Despite significant obstacles, the achieved progress in capacity and broadening of the application range over the last decade is impressive and unprecedented, as illustrated with the chosen examples from the literature. Large consortia, often with broad international participation, are making coordinated efforts to cope with many of the mentioned obstacles. Further rapid progress can therefore be prospected for the next decade.
高通量测序(HTS)正成为微生物分离株分型的前沿技术,尤其是在临床样本中。然而,其在食品监测和疫情调查中的应用仍处于起步阶段。在此,我们回顾已发表的文献,涵盖细菌、病毒和真核生物等各类食品病原体,以评估HTS实施的现状和潜力,为利益相关者提供信息,改善食品安全并减少疫情影响。测序技术和生物信息学的发展已超过了分析和解释序列数据的能力。样本处理、核酸提取与纯化、数据生成与解释的统一方案,以及包括非致病性“天然”菌株在内的经过适当注释和整理的参考数据库,这些因素对在食品分析监测、流行病学和疫情调查中充分发挥HTS的潜力以及补充食源性病原体控制和管理的预防方法而言,都是其他主要障碍。尽管存在重大障碍,但正如文献中所选实例所示,过去十年在能力提升和应用范围拓展方面取得的进展令人瞩目且史无前例。大型联盟,通常有广泛的国际参与,正在协同努力应对诸多上述障碍。因此,未来十年有望取得进一步的快速进展。