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评估自动化核酸提取系统与MinION测序相结合作为检测微生物生物特征的潜在工具。

Assessment of Automated Nucleic Acid Extraction Systems in Combination with MinION Sequencing As Potential Tools for the Detection of Microbial Biosignatures.

作者信息

Raymond-Bouchard Isabelle, Maggiori Catherine, Brennan Laura, Altshuler Ianina, Manchado Juan Manuel, Parro Victor, Whyte Lyle G

机构信息

Department of Natural Resource Sciences, McGill University, Quebec, Canada.

Centro de Astrobiología (CSIC-INTA), Torrejón de Ardoz, Madrid, Spain.

出版信息

Astrobiology. 2022 Jan;22(1):87-103. doi: 10.1089/ast.2020.2349. Epub 2021 Dec 24.

Abstract

The utilization of nanopore technologies for the detection of organic biogenic compounds has garnered significant focus in recent years. Oxford Nanopore Technologies' (ONT) MinION instrument, which can detect and sequence nucleic acids (NAs), is one such example. These technologies have much promise for unambiguous life detection but require significant development in terms of methods for extraction and preparation of NAs for biosignature detection and their feasibility for use in astrobiology-focused field missions. In this study, we tested pre-existing, automated, or semiautomated NA extraction technologies, coupled with automated ONT VolTRAX NA sample preparation, and verification with Nanopore MinION sequencing. All of the extraction systems tested (SuperFastPrep2, ClaremontX1, and SOLID-Sample Preparation Unit) showed potential for extracting DNA from Canadian High Arctic environments analogous to Mars, Europa, and Enceladus, which could subsequently be detected and sequenced with the MinION. However, they differed with regard to efficacy, yield, purity, and sequencing and annotation quality. Overall, bead beating-based systems performed the best for these parameters. In addition, we showed that the MinION could sequence unpurified DNA contained in crude cell lysates. This is valuable from an astrobiology perspective because purification steps are time-consuming and complicate the requirements for an automated extraction and life detection system. Our results indicate that semiautomated NA extraction and preparation technologies hold much promise, and with increased optimization and automation could be coupled to a larger platform incorporating nanopore detection and sequencing of NAs for life detection applications.

摘要

近年来,纳米孔技术在有机生物源化合物检测中的应用备受关注。牛津纳米孔技术公司(ONT)的MinION仪器能够检测核酸(NA)并进行测序,就是一个这样的例子。这些技术在明确的生命检测方面很有前景,但在用于生物特征检测的核酸提取和制备方法及其在以天体生物学为重点的实地任务中的可行性方面,还需要大力发展。在本研究中,我们测试了现有的、自动化或半自动化的核酸提取技术,并结合ONT VolTRAX核酸样本自动化制备,以及通过纳米孔MinION测序进行验证。所有测试的提取系统(SuperFastPrep2、ClaremontX1和SOLID - 样本制备单元)都显示出从类似于火星、木卫二和土卫二的加拿大高北极环境中提取DNA的潜力,随后可以用MinION进行检测和测序。然而,它们在效率、产量、纯度以及测序和注释质量方面存在差异。总体而言,基于珠磨法的系统在这些参数上表现最佳。此外,我们还表明MinION能够对粗细胞裂解物中未纯化的DNA进行测序。从天体生物学的角度来看,这很有价值,因为纯化步骤耗时且会使自动化提取和生命检测系统的要求变得复杂。我们的结果表明,半自动化的核酸提取和制备技术很有前景,通过进一步优化和自动化,可以与一个更大的平台相结合,该平台包含用于生命检测应用的核酸纳米孔检测和测序。

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