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Subsumed complexity: abiogenesis as a by-product of complex energy transduction

机译:假定的复杂性:生物合成是复杂能量转导的副产物

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摘要

The origins of life bring into stark relief the inadequacy of our current synthesis of thermodynamic, chemical, physical and information theory to predict the conditions under which complex, living states of organic matter can arise. Origins research has traditionally proceeded under an array of implicit or explicit guiding principles in lieu of a universal formalism for abiogenesis. Within the framework of a new guiding principle for prebiotic chemistry called subsumed complexity, organic compounds are viewed as by-products of energy transduction phenomena at different scales (subatomic, atomic, molecular and polymeric) that retain energy in the form of bonds that inhibit energy from reaching the ground state. There is evidence for an emergent level of complexity that is overlooked in most conceptualizations of abiogenesis that arises from populations of compounds formed from atomic energy input. We posit that different forms of energy input can exhibit different degrees of dissipation complexity within an identical chemical medium. By extension, the maximum capacity for organic chemical complexification across molecular and macromolecular scales subsumes, rather than emerges from, the underlying complexity of energy transduction processes that drive their production and modification.This article is part of the themed issue ‘Reconceptualizing the origins of life’.
机译:生命的起源使我们目前对热力学,化学,物理和信息理论的综合研究不足以预测有机物的复杂,活泼状态可能出现的条件,这使人们大为放松。传统上,起源研究是在一系列隐含或显式指导原则下进行的,以代替生物发生的普遍形式主义。在称为“复杂性”的益生元化学新指导原则的框架内,有机化合物被视为不同尺度(亚原子,原子,分子和聚合物)的能量传递现象的副产物,它们以抑制能量的键的形式保留能量从达到基态。有证据表明,复杂性的新兴水平在大多数生物发生的概念化过程中都被忽略了,而这种概念是由原子能输入形成的化合物群引起的。我们假设,在相同的化学介质中,不同形式的能量输入可以表现出不同程度的耗散复杂性。通过扩展,跨分子和大分子尺度的有机化学络合的最大能力归于驱动其生产和修饰的能量转导过程的潜在复杂性,而不是由其产生。本文是主题“重新认识生命起源”的一部分'。

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