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考虑在土卫二上探测代谢的有机标志物。

Considerations for Detecting Organic Indicators of Metabolism on Enceladus.

机构信息

Planetary Science Section, NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, California, USA.

Department of Earth, Atmospheric, and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

Astrobiology. 2024 Mar;24(3):328-338. doi: 10.1089/ast.2023.0074.

Abstract

Enceladus is of interest to astrobiology and the search for life since it is thought to host active hydrothermal activity and habitable conditions. It is also possible that the organics detected on Enceladus may indicate an active prebiotic or biotic system; in particular, the conditions on Enceladus may favor mineral-driven protometabolic reactions. When including metabolism-related biosignatures in Enceladus mission concepts, it is necessary to base these in a clearer understanding of how these signatures could also be produced prebiotically. In addition, postulating which biological metabolisms to look for on Enceladus requires a non-Earth-centric approach since the details of biological metabolic pathways are heavily shaped by adaptation to geochemical conditions over the planet's history. Creating metabolism-related organic detection objectives for Enceladus missions, therefore, requires consideration of how metabolic systems may operate differently on another world, while basing these speculations on observed Earth-specific microbial processes. In addition, advances in origin-of-life research can play a critical role in distinguishing between interpretations of any future organic detections on Enceladus, and the discovery of an extant prebiotic system would be a transformative astrobiological event in its own right.

摘要

土卫二之所以引起天体生物学和寻找生命的兴趣,是因为它被认为存在活跃的热液活动和宜居条件。此外,在土卫二上检测到的有机物质也可能表明存在活跃的前生物或生物系统;特别是,土卫二上的条件可能有利于矿物驱动的原代谢反应。在土卫二任务概念中包含与代谢相关的生物特征时,有必要更清楚地了解这些特征也可能是如何在原生物条件下产生的。此外,由于生物代谢途径的细节受到地球历史上地球化学条件的强烈影响,因此需要采用非以地球为中心的方法来假设在土卫二上寻找哪些生物代谢。因此,为土卫二任务创建与代谢相关的有机检测目标,需要考虑代谢系统在另一个世界上可能如何不同地运行,同时基于对观察到的特定于地球的微生物过程的推测。此外,生命起源研究的进展可以在区分土卫二上任何未来的有机检测结果的解释方面发挥关键作用,而发现现存的前生物系统本身将是一个具有变革性的天体生物学事件。

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