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Catalytic/Protective Properties of Martian Minerals and Implications for Possible Origin of Life on Mars

机译:火星矿物的催化/保护特性及其对火星生命起源的启示

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摘要

Minerals might have played critical roles for the origin and evolution of possible life forms on Mars. The study of the interactions between the “building blocks of life” and minerals relevant to Mars mineralogy under conditions mimicking the harsh Martian environment may provide key insight into possible prebiotic processes. Therefore, this contribution aims at reviewing the most important investigations carried out so far about the catalytic/protective properties of Martian minerals toward molecular biosignatures under Martian-like conditions. Overall, it turns out that the fate of molecular biosignatures on Mars depends on a delicate balance between multiple preservation and degradation mechanisms, often regulated by minerals, which may take place simultaneously. Such a complexity requires more efforts in simulating realistically the Martian environment in order to better inspect plausible prebiotic pathways and shed light on the nature of the organic compounds detected both in meteorites and on the surface of Mars through in situ analysis.
机译:矿物可能对火星上可能的生命形式的起源和演化起了关键作用。在模仿恶劣的火星环境的条件下,研究“生命的构成要素”与与火星矿物学有关的矿物质之间的相互作用的研究可能会提供对可能的益生元过程的关键见解。因此,该贡献旨在回顾迄今为止在类似火星的条件下,有关火星矿物对分子生物特征的催化/保护性能的最重要研究。总的来说,事实证明,火星上分子生物特征的命运取决于多种保存和降解机制之间的微妙平衡,这些机制通常是由矿物质调节的,而矿物可能同时发生。这种复杂性需要在现实中模拟火星环境方面做出更多努力,以便更好地检查可能的益生元途径,并通过原位分析揭示陨石和火星表面检测到的有机化合物的性质。

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