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The Martian subsurface as a potential window into the origin of life

机译:火星地下作为潜在窗口进入生命的起源

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摘要

Few traces of Earth's geologic record are preserved from the time of life's emergence, over 3,800 million years ago. Consequently, what little we understand about abiogenesis - the origin of life on Earth - is based primarily on laboratory experiments and theory. The best geological lens for understanding early Earth might actually come from Mars, a planet with a crust that's overall far more ancient than our own. On Earth, surface sedimentary environments are thought to best preserve evidence of ancient life, but this is mostly because our planet has been dominated by high photosynthetic biomass production at the surface for the last similar to 2,500 million years or more. By the time oxygenic photosynthesis evolved on Earth, Mars had been a hyperarid, frozen desert with a surface bombarded by high-energy solar and cosmic radiation for more than a billion years, and as a result, photosynthetic surface life may never have occurred on Mars. Therefore, one must question whether searching for evidence of life in Martian surface sediments is the best strategy. This Perspective explores the possibility that the abundant hydrothermal environments on Mars might provide more valuable insights into life's origins.
机译:几年以上,在生命的出现时,很少有地球地质记录的痕迹。因此,我们对辅助发现的几乎没有什么 - 地球生命起源 - 主要基于实验室实验和理论。最早期地球的最佳地质镜片可能实际上来自火星,一个带有地壳的星球,总体而言比我们自己更古代。在地球上,表面沉积环境被认为是最适合古代生活的证据,但这主要是因为我们的星球在表面的高光合生物量生产中占据了持续的25亿或更长时间。当含氧光合作用在地球上演变时,火星一直是一个过度的冷冻沙漠,用高能的太阳能和宇宙辐射轰炸了超过十亿多年的表面,因此,火星上可能永远不会发生光合表面生活。因此,一个必须质疑寻找火星地表沉积物的生命证据是最好的策略。这种观点探讨了火星上丰富的水热环境可能会对生活的起源提供更有价值的见解。

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