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A Proposed Geobiology-Driven Nomenclature for Astrobiological In Situ Observations and Sample Analyses

机译:一种提出的地质学驱动的术语,用于天竺葵学原位观察和样品分析

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As the exploration of Mars and other worlds for signs of life has increased, the need for a common nomenclature and consensus has become significantly important for proper identification of nonterrestrial/non-Earth biology, biogenic structures, and chemical processes generated from biological processes. The fact that Earth is our single data point for all life, diversity, and evolution means that there is an inherent bias toward life as we know it through our own planet's history. The search for life "as we don't know it" then brings this bias forward to decision-making regarding mission instruments and payloads. Understandably, this leads to several top-level scientific, theoretical, and philosophical questions regarding the definition of life and what it means for future life detection missions. How can we decide on how and where to detect known and unknown signs of life with a single biased data point? What features could act as universal biosignatures that support Darwinian evolution in the geological context of nonterrestrial time lines? The purpose of this article is to generate an improved nomenclature for terrestrial features that have mineral/microbial interactions within structures and to confirm which features can only exist from life (biotic), features that are modified by biological processes (biogenic), features that life does not affect (abiotic), and properties that can exist or not regardless of the presence of biology (abiogenic). These four categories are critical in understanding and deciphering future returned samples from Mars, signs of potential extinct/ancient and extant life on Mars, and in situ analyses from ocean worlds to distinguish and separate what physical structures and chemical patterns are due to life and which are not. Moreover, we discuss hypothetical detection and preservation environments for extant and extinct life, respectively. These proposed environments will take into account independent active and ancient in situ detection prospects by using previous planetary exploration studies and discuss the geobiological implications within an astrobiological context.
机译:由于MARS和其他世界迹象的探索有所增加,对于常见的命名和共识的需求对于适当鉴定从生物过程产生的非暴力/非地球生物学,生物结构和化学过程而变得明显重要。地球是我们所有生命,多样性和演变的单一数据点的事实意味着我们通过我们自己的星球历史知道了生活的固有偏见。寻找生命“如我们不知道它”,然后将此偏向导致关于任务仪器和有效载荷的决策。可以理解的是,这导致了关于生命定义的几个顶级科学,理论和哲学问题以及对未来生命检测任务的意义。我们如何通过单一偏置数据点决定如何检测已知和未知的生命迹象?什么特征可以充当普遍生物的生物创作物,支持达尔文的地质背景中的达尔文进化?本文的目的是生成具有结构内矿物/微生物相互作用的矿物/微生物相互作用的改进的术语,并确认只能存在于生物过程(生物生物)修改的生命(生物),具有生命的特征的特征不影响(非生物),以及无论生物学的存在如何,都存在或不存在的性质(副原子)。这四个类别对于从火星的理解和解密的未来样品中的理解和解密,潜在的灭绝/古老和现存生活的​​迹象,以及来自海洋世界的原地分析,以区分和分离物理结构和化学模式是由于生命,哪些不是。此外,我们分别讨论了假设的检测和保存环境,分别用于现存和灭绝的生命。这些拟议的环境将通过使用以前的行星探索研究来考虑独立的主动和古代原位检测前景,并讨论古代语境中的地质学意义。

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