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快速、可扩展且实用:用于紧急微生物组学生物监测的碱性 DNA 提取方案。

Fast, Scalable, and Practical: An Alkaline DNA Extraction Pipeline for Emergency Microbiomics Biosurveillance.

机构信息

Plant Protection Division of Patras, Institute of Industrial and Forage Plants, Patras, Greece.

National Collection of Pathogenic Fungi, Department of Microbiology, School of Medicine, National and Kapodistrian University of Athens, Athens, Greece.

出版信息

OMICS. 2021 Aug;25(8):484-494. doi: 10.1089/omi.2021.0090. Epub 2021 Jul 13.

Abstract

Pandemics and environmental crises evident from the first two decades of the 21st century call for methods innovation in biosurveillance and early detection of risk signals in planetary ecosystems. In crises conditions, conventional methods in public health, biosecurity, and environmental surveillance do not work well. In addition, the standard laboratory amenities and procedures may become unavailable, irrelevant, or simply not feasible, for example, owing to disruptions in logistics and process supply chains. The COVID-19 pandemic has been a wakeup call in this sense to reintroduce point-of-need diagnostics with an eye to limited resource settings and biosurveillance solutions. We report here a methodology innovation, a fast, scalable, and alkaline DNA extraction pipeline for emergency microbiomics biosurveillance. We believe that the presented methodology is well poised for effective, resilient, and anticipatory responses to future pandemics and ecological crises while contributing to microbiome science and point-of-need diagnostics in nonelective emergency contexts. The alkaline DNA extraction pipeline can usefully expand the throughput in emergencies by deployment or to allow backup in case of instrumentation failure in vital facilities. The need for distributed public health genomics surveillance is increasingly evident in the 21st century. This study makes a contribution to these ends broadly, and for future pandemic preparedness in particular. We call for innovation in biosurveillance methods that remain important existentially on a planet under pressure from unchecked human growth and breach of the boundaries between human and nonhuman animal habitats.

摘要

从 21 世纪头二十年的情况来看,大流行病和环境危机要求在行星生态系统中对生物监测和风险信号的早期检测进行方法创新。在危机情况下,公共卫生、生物安全和环境监测方面的常规方法效果不佳。此外,由于后勤和流程供应链的中断,标准的实验室设施和程序可能变得不可用、不相关或根本不可行。在这方面,新冠肺炎疫情敲响了警钟,需要重新引入基于现场的诊断方法,着眼于资源有限的环境和生物监测解决方案。在这里,我们报告了一种方法创新,即一种快速、可扩展且碱性的 DNA 提取流水线,用于紧急微生物组学生物监测。我们相信,所提出的方法为有效、有弹性和前瞻性的应对未来的大流行和生态危机做好了准备,同时为非选择性紧急情况下的微生物组科学和现场诊断做出了贡献。在紧急情况下,碱性 DNA 提取流水线的部署可以增加通量,或者在重要设施的仪器发生故障时提供备份。在 21 世纪,分布式公共卫生基因组监测的需求日益明显。本研究为此做出了广泛的贡献,特别是为未来的大流行防范做出了贡献。我们呼吁对生物监测方法进行创新,这些方法在人类不受控制的增长和人类与非人类动物栖息地之间的界限被突破的压力下的行星上仍然具有重要的存在意义。

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