Mojarro Angel, Ruvkun Gary, Zuber Maria T, Carr Christopher E
1 Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology , Cambridge, Massachusetts.
2 Department of Molecular Biology, Massachusetts General Hospital , Boston, Massachusetts.
Astrobiology. 2017 Aug;17(8):747-760. doi: 10.1089/ast.2016.1535. Epub 2017 Jul 13.
Biological informational polymers such as nucleic acids have the potential to provide unambiguous evidence of life beyond Earth. To this end, we are developing an automated in situ life-detection instrument that integrates nucleic acid extraction and nanopore sequencing: the Search for Extra-Terrestrial Genomes (SETG) instrument. Our goal is to isolate and determine the sequence of nucleic acids from extant or preserved life on Mars, if, for example, there is common ancestry to life on Mars and Earth. As is true of metagenomic analysis of terrestrial environmental samples, the SETG instrument must isolate nucleic acids from crude samples and then determine the DNA sequence of the unknown nucleic acids. Our initial DNA extraction experiments resulted in low to undetectable amounts of DNA due to soil chemistry-dependent soil-DNA interactions, namely adsorption to mineral surfaces, binding to divalent/trivalent cations, destruction by iron redox cycling, and acidic conditions. Subsequently, we developed soil-specific extraction protocols that increase DNA yields through a combination of desalting, utilization of competitive binders, and promotion of anaerobic conditions. Our results suggest that a combination of desalting and utilizing competitive binders may establish a "universal" nucleic acid extraction protocol suitable for analyzing samples from diverse soils on Mars. Key Words: Life-detection instruments-Nucleic acids-Mars-Panspermia. Astrobiology 17, 747-760.
诸如核酸这类生物信息聚合物有可能为地球以外存在生命提供明确证据。为此,我们正在开发一种集成核酸提取和纳米孔测序功能的自动化原位生命探测仪器:外星基因组搜索(SETG)仪器。我们的目标是,如果火星上的生命与地球上的生命有共同的祖先,那么就从火星上现存或保存的生命中分离并确定核酸序列。与对地球环境样本进行宏基因组分析一样,SETG仪器必须从原始样本中分离核酸,然后确定未知核酸的DNA序列。由于土壤化学依赖的土壤 - DNA相互作用,即吸附到矿物表面、与二价/三价阳离子结合、铁氧化还原循环破坏以及酸性条件,我们最初的DNA提取实验得到的DNA量很低甚至检测不到。随后,我们开发了针对土壤的提取方案,通过脱盐、使用竞争性结合剂以及促进厌氧条件的组合来提高DNA产量。我们的结果表明,脱盐和使用竞争性结合剂的组合可能建立一种“通用”的核酸提取方案,适用于分析火星上不同土壤的样本。关键词:生命探测仪器 - 核酸 - 火星 - 泛种论。天体生物学17,747 - 760。