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Chemical roots of biological evolution: the origins of life as a process of development of autonomous functional systems

机译:生物进化的化学根源:生命的起源是自主功能系统发展的过程

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In recent years, an extension of the Darwinian framework is being considered for the study of prebiotic chemical evolution, shifting the attention from homogeneous populations of naked molecular species to populations of heterogeneous, compartmentalized and functionally integrated assemblies of molecules. Several implications of this shift of perspective are analysed in this critical review, both in terms of the individual units, which require an adequate characterization as self-maintaining systems with an internal organization, and also in relation to their collective and long-term evolutionary dynamics, based on competition, collaboration and selection processes among those complex individuals. On these lines, a concrete proposal for the set of molecular control mechanisms that must be coupled to bring about autonomous functional systems, at the interface between chemistry and biology, is provided.
机译:近年来,正在考虑对达尔文框架进行扩展,以研究益生元的化学演化,从而将注意力从裸分子物种的同质种群转移到分子的异质,分隔和功能集成的分子种群。在这一重要的回顾中,分析了这种观点转变的一些含义,既涉及单个单元,这需要充分表征为具有内部组织的自我维护系统,还需要与其集体和长期的演化动力相关。 ,基于这些复杂个体之间的竞争,协作和选择过程。在这些方面,为在化学和生物学之间的界面上必须结合以实现自主功能系统的分子控制机制提供了具体建议。

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