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Prebiotic Geochemical Automata at the Intersection of Radiolytic Chemistry, Physical Complexity, and Systems Biology

机译:辐射化学,物理复杂性和系统生物学交叉口的益生元地球化学自动机

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The tractable history of life records a successive emergence of organisms composed of hierarchically organized cells and greater degrees of individuation. The lowermost object level of this hierarchy is the cell, but it is unclear whether the organizational attributes of living systems extended backward through prebiotic stages of chemical evolution. If the systems biology attributes of the cell were indeed templated upon prebiotic synthetic relationships between subcellular objects, it is not obvious how to categorize object levels below the cell in ways that capture any hierarchies which may have preceded living systems. In this paper, we map out stratified relationships between physical components that drive the production of key prebiotic molecules starting from radiolysis of a small number of abundant molecular species. Connectivity across multiple levels imparts the potential to create and maintain far-from-equilibrium chemical conditions and to manifest nonlinear system behaviors best approximated using automata formalisms. The architectural attribute of “information hiding” of energy exchange processes at each object level is shared with stable, multitiered automata such as digital computers. These attributes may indicate a profound connection between the system complexity afforded by energy dissipation by subatomic level objects and the emergence of complex automata that could have preceded biological systems.
机译:易处理的生活史记录了由分层组织的细胞和更大程度的个体化组成的有机体的连续出现。该层次结构的最低对象级别是细胞,但尚不清楚生物系统的组织属性是否通过化学演化的益生元阶段向后扩展。如果细胞的系统生物学属性确实是根据亚细胞对象之间的益生元合成关系来模板化的,那么如何以捕获生活系统之前的任何层级的方式对细胞下方的对象水平进行分类并不明显。在本文中,我们绘制出了从少量丰富分子种类的辐射分解开始,驱动关键益生元分子生产的物理成分之间的分层关系。跨多个级别的连通性赋予了创造和维持远离平衡化学条件的潜力,并展现了使用自动机形式主义最近似的非线性系统行为。每个对象级别的能量交换过程的“信息隐藏”的体系结构属性与稳定的多层自动机(例如数字计算机)共享。这些属性可能表明,亚原子级对象的能量消散所提供的系统复杂性与可能早于生物系统的复杂自动机的出现之间存在着深远的联系。

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