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The fundamental nature of life as a chemical system: the part played by inorganic elements [Review]

机译:生命作为化学系统的基本性质:无机元素发挥的作用[综述]

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in this article we show why inorganic metal elements from the environment were an essential part of the origin of living aqueous systems of chemicals in flow. Unavoidably such systems have many closely fixed parameters, related to thermodynamic binding constants, for the interaction of the essential exchangeable inorganic metal elements with both inorganic and organic non-metal materials. The binding constants give rise to fixed free metal ion concentration profiles for different metal ions and ligands in the cytoplasm of all cells closely related to the Irving-Williams series. The amounts of bound elements depend on the organic molecules present as well as these free ion concentrations. This system must have predated coding which is probably only essential for reproductive life. Later evolution in changing chemical environments became based on the development of extra cytoplasmic compartments containing quite different energised free (and bound) element contents but in feed-back communication with the central primitive cytoplasm which changed little. Hence species multiplied late in evolution in large part due to the coupling with the altered inorganic environment.
机译:在本文中,我们说明了为什么来自环境的无机金属元素是流动化学物质的含水系统起源的重要组成部分。不可避免地,这样的系统具有许多与热力学结合常数有关的紧密固定的参数,用于基本可交换的无机金属元素与无机和有机非金属材料的相互作用。结合常数导致与Irving-Williams系列密切相关的所有细胞的细胞质中不同金属离子和配体的固定自由金属离子浓度分布。结合元素的数量取决于存在的有机分子以及这些自由离子的浓度。该系统必须预先编码,这可能仅对生殖生活至关重要。不断变化的化学环境的后来演变基于胞质区室的发展,该区室包含充满能量的游离(和结合)元素含量不同,但与中央原始细胞质的反馈通讯几乎没有变化。因此,由于与改变的无机环境的耦合,物种在进化后期大量繁殖。

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