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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >From volcanic origins of chemoautotrophic life to Bacteria, Archaea and Eukarya
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From volcanic origins of chemoautotrophic life to Bacteria, Archaea and Eukarya

机译:从化学自养生物的火山起源到细菌,古细菌和真核生物

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摘要

The theory of a chemoautotrophic origin of life in a volcanic iron-sulphur world postulates a pioneer organism at sites of reducing volcanic exhalations. The pioneer organism is characterized by a composite structure with an inorganic substructure and an organic superstructure. Within the surfaces of the inorganic substructure iron, cobalt, nickel and other transition metal centres with sulphido, carbonyl and other ligands were catalytically active and promoted the growth of the organic superstructure through carbon fixation, driven by the reducing potential of the volcanic exhalations. This pioneer metabolism was reproductive by an autocatalytic feedback mechanism. Some organic products served as ligands for activating catalytic metal centres whence they arose. The unitary structure-function relationship of the pioneer organism later gave rise to two major strands of evolution: cellularization and emergence of the genetic machinery. This early phase of evolution ended with segregation of the domains Bacteria, Archaea and Eukarya from a rapidly evolving population of pre-cells. Thus, life started with an initial, direct, deterministic chemical mechanism of evolution giving rise to a later, indirect, stochastic, genetic mechanism of evolution and the upward evolution of life by increase of complexity is grounded ultimately in the synthetic redox chemistry of the pioneer organism.
机译:火山铁硫世界中化学自养生物起源的理论假定在减少火山呼气的地点存在先驱生物。先锋生物的特征是具有无机亚结构和有机超结构的复合结构。在无机亚结构的表面上,铁,钴,镍和其他具有硫化基,羰基和其他配体的过渡金属中心具有催化活性,并通过火山固着力的降低,通过碳固定作用促进了有机上部结构的生长。这种先驱的新陈代谢通过自动催化反馈机制而繁殖。一些有机产物在它们出现时用作活化催化金属中心的配体。先驱生物的单一结构-功能关系后来引起了两个主要的进化链:细胞化和遗传机制的出现。进化的早期阶段以迅速发展的前细胞群体中的细菌,古细菌和真核生物域分离而告终。因此,生命始于最初的,直接的,确定性的进化化学机制,从而产生了后来的,间接的,随机的,遗传的进化机制,而由于复杂性的增加,生命的向上进化最终以先驱者的合成氧化还原化学为基础。生物。

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