Department of Planetary Sciences, School of Geosciences, University of Aberdeen, Meston Building, Aberdeen, AB24 3UE, Scotland.
Centro de Astrobiología (CAB), CSIC-INTA, 28850, Torrejón de Ardoz, Madrid, Spain.
Sci Rep. 2023 Sep 15;13(1):15277. doi: 10.1038/s41598-023-42170-6.
DNA is an incontrovertible biosignature whose sequencing aids in species identification, genome functionality, and evolutionary relationships. To study life within the rocks of Earth and Mars, we demonstrate, in an ISO5 clean room, a procedure based on nanopore technology that correctly identifies organisms at picogram levels of DNA without amplification. Our study with E. coli and S. cerevisiae DNA samples showed that MinION sequencer (Oxford Nanopore Technologies) can unequivocally detect and characterise microbes with as little as 2 pg of input with just 50 active nanopores. This result is an excellent advancement in sensitivity, immediately applicable to investigating low biomass samples. This value is also at the level of possible background contamination associated with the reagents and the environment. Cultivation of natural and heat-treated Martian analogue (MMS-2) regolith samples, exposed to atmospheric water vapour or in increasing water concentrations, led to the extraction of 600-1000 pg of DNA from 500 mg of soil. Applying the low detectability technology enabled through MinION sequencer for a natural low biomass setting, we characterised the dry MMS-2 and found few soil-related organisms and airborne contaminants. The picogram detection level and the procedure presented here, may be of interest for the future Mars sample Return program, and the life research and planetary protection studies that will be implemented through the sample safety assessment.
DNA 是一种不容置疑的生物特征,其测序有助于物种鉴定、基因组功能和进化关系。为了研究地球和火星岩石中的生命,我们在 ISO5 洁净室中展示了一种基于纳米孔技术的程序,该程序无需扩增即可在皮克级水平的 DNA 上正确识别生物。我们对大肠杆菌和酿酒酵母 DNA 样本的研究表明,MinION 测序仪(Oxford Nanopore Technologies)可以使用少至 2pg 的输入量和仅 50 个活跃的纳米孔来明确地检测和表征微生物。这一结果在灵敏度方面是一个极好的进步,可立即应用于研究低生物量样本。该值也处于与试剂和环境相关的可能背景污染的水平。对暴露于大气水蒸气或增加水浓度的天然和热处理火星模拟物(MMS-2)风化层样本进行培养,从 500mg 土壤中提取了 600-1000pg 的 DNA。应用 MinION 测序仪实现的低检测灵敏度技术,用于自然低生物量环境,我们对干燥的 MMS-2 进行了表征,发现很少有与土壤相关的生物和空气传播污染物。这里提出的皮克级检测水平和程序可能对未来的火星样本返回计划以及将通过样本安全评估实施的生命研究和行星保护研究感兴趣。