Department of Natural Resource Sciences, McGill University, Sainte-Anne-de-Bellevue, Canada.
McGill Space Institute, Montréal, Canada.
Astrobiology. 2023 Jul;23(7):756-768. doi: 10.1089/ast.2022.0130. Epub 2023 Apr 26.
The search for extant microbial life will be a major focus of future astrobiology missions; however, no direct extant life detection instrumentation is included in current missions to Mars. In this study, we developed the semiautomated MicroLife detection platform that collects and processes environmental samples, detects biosignatures, and characterizes microbial activity. This platform is composed of a drill for sample collection, a redox dye colorimetric system for microbial metabolic activity detection and assessment (μMAMA [microfluidics Microbial Activity MicroAssay]), and a MinION sequencer for biosignature detection and characterization of microbial communities. The MicroLife platform was field-tested on White Glacier on Axel Heiberg Island in the Canadian high Arctic, with two extracted ice cores. The μMAMA successfully detected microbial metabolism from the ice cores within 1 day of incubation. The MinION sequencing of the ice cores and the positive μMAMA card identified a microbial community consistent with cold and oligotrophic environments. Furthermore, isolation and identification of microbial isolates from the μMAMA card corroborated the MinION sequencing. Together, these analyses support the MicroLife platform's efficacy in identifying microbes natively present in cryoenvironments and detecting their metabolic activity. Given our MicroLife platform's size and low energy requirements, it could be incorporated into a future landed platform or rovers for life detection.
寻找现存的微生物生命将是未来天体生物学任务的一个主要重点;然而,目前前往火星的任务中并没有包含直接探测现存生命的仪器。在这项研究中,我们开发了半自动的 MicroLife 检测平台,该平台可采集和处理环境样本、检测生物特征,并对微生物活性进行特征描述。该平台由一个用于样本采集的钻头、一个用于微生物代谢活性检测和评估的氧化还原染料比色系统(μMAMA [微流控微生物活性微量分析])和一个 MinION 测序仪组成,用于生物特征检测和微生物群落的特征描述。MicroLife 平台在加拿大北极的 Axel Heiberg 岛上的 White Glacier 进行了现场测试,使用了两个提取的冰芯。μMAMA 在孵育 1 天后成功地从冰芯中检测到微生物代谢。冰芯的 MinION 测序和阳性的 μMAMA 卡鉴定出了与寒冷和贫营养环境一致的微生物群落。此外,从 μMAMA 卡中分离和鉴定微生物分离株也证实了 MinION 测序的结果。总之,这些分析支持了 MicroLife 平台在识别冷冻环境中固有微生物并检测其代谢活性方面的有效性。鉴于我们的 MicroLife 平台的体积小且能耗低,它可以被纳入未来的着陆平台或漫游车中进行生命探测。