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Hydrothermal Chemistry and the Origin of Cellular Life

机译:水热化学与细胞生命起源

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Two processes required for life's origin are condensation reactions that produce essential biopolymers by a nonenzymatic reaction, and self-assembly of membranous compartments that encapsulate the polymers into populations of protocells. Because life today thrives not just in the temperate ocean and lakes but also in extreme conditions of temperature, salinity, and pH, there is a general assumption that any form of liquid water would be sufficient to support the origin of life as long as there are sources of chemical energy and simple organic compounds. We argue here that the first forms of life would be physically and chemically fragile and would be strongly affected by ionic solutes and pH. A hypothesis emerges from this statement that hot springs associated with volcanic land masses have an ionic composition more conducive to self-assembly and polymerization than seawater. Here we have compared the ionic solutes of seawater with those of terrestrial hot springs. We then describe preliminary experimental results that show how the hypothesis can be tested in a prebiotic analog environment.
机译:生命起源所需的两个过程是通过非酶反应产生必需的生物聚合物的缩合反应,以及将聚合物封装成原生细胞群的膜状隔室的自组装。由于当今的生命不仅在温带的海洋和湖泊中繁盛,而且在极端的温度,盐度和pH值条件下都可以繁衍生息,因此人们普遍认为,只要存在,任何形式的液态水就足以支撑生命的起源。化学能源和简单有机化合物的来源。在这里,我们认为生命的第一形式在物理和化学上都是脆弱的,并且会受到离子溶质和pH的强烈影响。从该陈述得出的假设是,与火山地块相关的温泉具有比海水更有利于自组装和聚合的离子组成。在这里,我们将海水的离子溶质与陆地温泉的离子溶质进行了比较。然后,我们描述了初步的实验结果,这些结果表明了如何在益生元类似物环境中检验该假设。

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