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Investigating the biological potential of galactic cosmic ray-induced radiation-driven chemical disequilibrium in the Martian subsurface environment

机译:调查Martian地下环境中银河宇宙射线诱导的辐射驱动的辐射驱动的化学不平衡的生物潜力

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There is growing evidence suggesting the presence of aqueous environment on ancient Mars, raising the question of the possibility of life in such an environment. Subsequently, with the erosion of the Martian atmosphere resulting in drastic changes in its climate, surface water disappeared, shrinking habitable spaces on the planet, with only a limited amount of water remaining near the surface in form of brines and water–ice deposits. Life, if it ever existed, would have had to adapt to harsh modern conditions, which includes low temperatures and surface pressure, and high radiation dose. Presently, there is no evidence of any biological activity on the planet’s surface, however, the subsurface environment, which is yet to be explored, is less harsh, has traces of water in form of water–ice and brines, and undergoes radiation-driven redox chemistry. I hypothesize that Galactic Cosmic Ray (GCR)-induced radiation-driven chemical disequilibrium can be used for metabolic energy by extant life, and host organisms using mechanisms seen in similar chemical and radiation environments on Earth. I propose a GCR-induced radiolytic zone, and discuss the prospects of finding such life with Rosalind Franklin rover of the ExoMars mission.
机译:有越来越多的证据表明存在古代火星水环境的存在,提高了这种环境中生活的可能性问题。随后,随着火星气氛的侵蚀,导致其气候变化,地面水消失,地球上可居住的空间缩小,只有有限的水,丝石和水 - 冰沉积物的形式靠近表面。生活,如果它存在,将不得不适应苛刻的现代条件,包括低温和表面压力和高辐射剂量。目前,没有证据表明地球表面的任何生物活动,然而,尚未探索的地下环境不那么苛刻,具有水 - 冰和盐水形式的水痕迹,并经历辐射驱动氧化还原化学。我假设银河宇宙射线(GCR)诱导的辐射驱动的化学不平衡可用于通过现存的寿命来用于代谢能,并且使用地球上类似化学和辐射环境中看到的机制的宿主生物。我提出了一种GCR诱导的辐射性菌区,并讨论了罗莎琳富兰克林福戈的发现前景的前景。

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    《Scientific reports.》 |2020年第1期|共7页
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    Dimitra Atri;

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  • 入库时间 2022-08-19 01:11:27

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