Sephton Mark A, Steele Andrew, Westall Frances, Schubotz Florence
Department of Earth Science and Engineering, South Kensington Campus, Imperial College London, London SW7 2AZ, United Kingdom.
Geophysical Laboratory, Carnegie Institution of Washington, Washington, DC 20015.
Proc Natl Acad Sci U S A. 2025 Jan 14;122(2):e2404256121. doi: 10.1073/pnas.2404256121. Epub 2025 Jan 6.
The search for evidence of past prebiotic or biotic activity on Mars will be enhanced by the return of samples to Earth laboratories. While impressive analytical feats have been accomplished by in situ missions on the red planet, accessing the capabilities of Earth's global laboratories will present a step change in data acquisition. Highly diagnostic markers of past life are biomarkers, organic molecules whose architecture can be attributed to once living organisms. Similar organic molecular structures can also be used to identify the prebiotic steps that preceded any emergence of life. The style of modification or degradation of such organic structures indicates their agents of change, including oxidants, radiation, heating, water, and pressure. For biomarker analysis, sample return provides enhanced opportunities for sample preparation and analyte isolation. The augmentation of biomarker data with spatial information provides the opportunity for confirmatory data but is a multistep and multitechnique process best achieved here on Earth. Efficient use of returned samples will benefit from lessons learned on Earth's ancient records and meteorites from Mars. The next decade is a time when analytical capabilities can be improved as we prepare for the delivery of carefully selected and collected extraterrestrial samples containing potential evidence of the development or even emergence of past life on Mars.
将样本带回地球实验室,将有助于寻找火星过去存在益生元或生物活动的证据。尽管火星上的原位探测任务已经取得了令人瞩目的分析成果,但利用地球上全球实验室的能力将使数据采集实现飞跃。过去生命的高度诊断性标志物是生物标志物,即其结构可归因于曾经有生命的生物体的有机分子。类似的有机分子结构也可用于识别生命出现之前的益生元步骤。此类有机结构的修饰或降解方式表明了其变化因素,包括氧化剂、辐射、加热、水和压力。对于生物标志物分析而言,样本返回为样本制备和分析物分离提供了更多机会。将生物标志物数据与空间信息相结合,可为确证数据提供契机,但这是一个多步骤、多技术的过程,在地球上进行最为理想。有效利用返回的样本将受益于从地球古代记录和火星陨石中吸取的经验教训。在我们为接收精心挑选和采集的外星样本做准备的过程中,未来十年是提升分析能力的时期,这些样本可能包含火星过去生命发展甚至出现的潜在证据。