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自然放射性环境作为生命起源局部失衡的来源。

Natural Radioactive Environments as Sources of Local Disequilibrium for the Emergence of Life.

机构信息

Brazilian Synchrotron Light Laboratory (LNLS), Brazilian Center for Research in Energy and Materials (CNPEM), Campinas, Brazil.

Instituto de Física de São Carlos, Universidade de São Paulo, São Carlos, Brazil.

出版信息

Astrobiology. 2020 Dec;20(12):1489-1497. doi: 10.1089/ast.2019.2133. Epub 2020 Sep 9.

Abstract

Certain subterranean environments of Earth have naturally accumulated long-lived radionuclides, such as U, Th, and K, near the presence of liquid water. In these natural radioactive environments, water radiolysis can produce chemical species of biological importance, such as H. Although the proposal of radioactive decay as an alternative source of energy for living systems has existed for >30 years, this hypothesis gained strength after the recent discovery of a peculiar ecosystem in a gold mine in South Africa, whose existence is dependent on chemical species produced by water radiolysis. In this study, we calculate the chemical disequilibrium generated locally by water radiolysis due to gamma radiation. We then analyze the possible contribution of this disequilibrium for the emergence of life, considering conditions of early Earth and having as reference the alkaline hydrothermal vent theory. Results from our kinetic model point out the similarities between the conditions caused by water radiolysis and those found on alkaline hydrothermal systems. Our model produces a steady increase of pH with time, which favors the formation of a natural electrochemical gradient and the precipitation of minerals with catalytic activity for protometabolism in this aqueous environment. We conclude by describing a possible free-energy conversion mechanism based on protometabolism, which could be a requisite for the emergence of life in Hadean Earth.

摘要

地球上某些地下环境中,由于液态水的存在,自然地积累了长寿命的放射性核素,如 U、Th 和 K。在这些天然放射性环境中,水的辐射分解可以产生具有生物重要性的化学物质,如 H。尽管放射性衰变作为生命系统的替代能源的提议已经存在了>30 年,但这一假说在最近发现南非金矿中的一个特殊生态系统后得到了加强,该生态系统的存在依赖于水辐射分解产生的化学物质。在这项研究中,我们计算了由于伽马辐射导致水辐射分解产生的局部化学不平衡。然后,我们分析了这种不平衡对生命出现的可能贡献,考虑了早期地球的条件,并以碱性热液喷口理论为参考。我们的动力学模型的结果指出了水辐射分解引起的条件与碱性热液系统中发现的条件之间的相似性。我们的模型产生了 pH 值随时间的稳定增加,这有利于在这种水相环境中形成自然电化学梯度和具有原代谢催化活性的矿物沉淀。最后,我们描述了一种基于原代谢的可能的自由能转换机制,这可能是 Hadean 地球上生命出现的必要条件。

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