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下一代测序和生物信息学方法在传染病研究和公共卫生中的应用:建立实验室能力的方法、应用和考虑因素。

Next Generation Sequencing and Bioinformatics Methodologies for Infectious Disease Research and Public Health: Approaches, Applications, and Considerations for Development of Laboratory Capacity.

机构信息

Viral Diseases Branch, Walter Reed Army Institute of Research, Silver Spring, Maryland.

Department of Biological Sciences, St Cloud State University, Minnesota.

出版信息

J Infect Dis. 2020 Mar 28;221(Suppl 3):S292-S307. doi: 10.1093/infdis/jiz286.

Abstract

Next generation sequencing (NGS) combined with bioinformatics has successfully been used in a vast array of analyses for infectious disease research of public health relevance. For instance, NGS and bioinformatics approaches have been used to identify outbreak origins, track transmissions, investigate epidemic dynamics, determine etiological agents of a disease, and discover novel human pathogens. However, implementation of high-quality NGS and bioinformatics in research and public health laboratories can be challenging. These challenges mainly include the choice of the sequencing platform and the sequencing approach, the choice of bioinformatics methodologies, access to the appropriate computation and information technology infrastructure, and recruiting and retaining personnel with the specialized skills and experience in this field. In this review, we summarize the most common NGS and bioinformatics workflows in the context of infectious disease genomic surveillance and pathogen discovery, and highlight the main challenges and considerations for setting up an NGS and bioinformatics-focused infectious disease research public health laboratory. We describe the most commonly used sequencing platforms and review their strengths and weaknesses. We review sequencing approaches that have been used for various pathogens and study questions, as well as the most common difficulties associated with these approaches that should be considered when implementing in a public health or research setting. In addition, we provide a review of some common bioinformatics tools and procedures used for pathogen discovery and genome assembly, along with the most common challenges and solutions. Finally, we summarize the bioinformatics of advanced viral, bacterial, and parasite pathogen characterization, including types of study questions that can be answered when utilizing NGS and bioinformatics.

摘要

下一代测序 (NGS) 与生物信息学相结合,已成功应用于广泛的传染病研究分析中,与公共卫生相关。例如,NGS 和生物信息学方法已被用于识别暴发源头、追踪传播、调查疫情动态、确定疾病的病因,并发现新的人类病原体。然而,在研究和公共卫生实验室中实施高质量的 NGS 和生物信息学可能具有挑战性。这些挑战主要包括测序平台和测序方法的选择、生物信息学方法的选择、适当的计算和信息技术基础设施的获取,以及招募和留住具有该领域专业技能和经验的人员。在这篇综述中,我们总结了传染病基因组监测和病原体发现背景下最常见的 NGS 和生物信息学工作流程,并强调了建立专注于 NGS 和生物信息学的传染病研究公共卫生实验室的主要挑战和考虑因素。我们描述了最常用的测序平台,并回顾了它们的优缺点。我们回顾了用于各种病原体和研究问题的测序方法,以及在公共卫生或研究环境中实施时应考虑的这些方法最常见的困难。此外,我们还提供了用于病原体发现和基因组组装的一些常见生物信息学工具和程序的综述,以及最常见的挑战和解决方案。最后,我们总结了高级病毒、细菌和寄生虫病原体特征的生物信息学,包括利用 NGS 和生物信息学可以回答的研究问题类型。

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