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The Hydrogen Peroxide-Water Hypothesis for Life on Mars and the Problem of Detection

机译:火星上生命的过氧化氢 - 水假设和检测问题

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The conditions on Mars imply an evolutionary advantage for organisms employing a mixture of H2O2 and H2O in their intracellular fluid: the H2O2-H2O eutectic freezes at -56.5°C, is hygroscopic and a source of oxygen. Contrary to common belief, H2O2 is used for a variety of purposes in terrestrial biochemistry, The Viking Lander Biology Experiments have often been interpreted as the result of inorganic oxidants in the Martian soil. Here, we interpret the Viking findings as the result of the reactions of H2O2-H2O based life. Several hitherto puzzling findings are explained by the H2O2-H2O hypothesis The lack of detected organics is the result of autooxidation of the organisms as these were gradually heated. Supportive observations were made in the PR and LR experiments Our interpretation is that the addition of water vapor at a relatively high temperature could only be withstood by the organisms for a short time, as they perished due to hyperhydration.. The evolution of oxygen in the GEx experiment is explained by the high oxidative content of the organisms as they perished in this experiment. The PR experimental conditions were most Mars-like and carbon assimilation could be detected but no growth. Particularly, the GEx experiment allows the calculation of biomass in the Martian soil based on measured evolution of reaction products Further properties of the suggested organisms such as metabolic reactions and by-products may be detected by future Mars missions.
机译:MARS的条件意味着在其细胞内流体中使用H 2 O 2和H 2 O的混合物的生物的进化优势:H 2 O 2-H 2 O共晶冻结在-56.5℃下,是吸湿的和氧气源。与常见的信念相反,H2O2用于陆地生物化学中的各种目的,维京地上的兰德生物学实验通常被解释为Martian土壤中无机氧化剂的结果。在这里,我们将维京发现解释为基于H2O2-H2O的寿命的反应。 H2O2-H2O假设解释了几个迄今为止的令人费解的发现,缺乏检测到的有机物是生物体自动氧化的结果,因为这些逐渐加热。在PR和LR实验中进行了支持性观察,我们的解释是在相对较高的温度下添加水蒸气只能通过生物体在短时间内被遗憾,因为它们因超细管而被捕。氧气的演变GEX实验由生物体的高氧化含量来解释,因为它们在本实验中捕获。 PR实验条件最多是MARS样和碳同化,但不能进行增长。特别是,GEX实验允许基于测量的反应产物的测量播种的生物量计算,这些反应产物的进一步性质如未来的火星任务可以检测到诸如代谢反应等代谢反应和副产物的性质。

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