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Ecology and Evolution in the RNA World Dynamics and Stability of Prebiotic Replicator Systems

机译:益生元复制系统的RNA世界动力学和稳定性的生态学和进化

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As of today, the most credible scientific paradigm pertaining to the origin of life on Earth is undoubtedly the RNA World scenario. It is built on the assumption that catalytically active replicators (most probably RNA-like macromolecules) may have been responsible for booting up life almost four billion years ago. The many different incarnations of nucleotide sequence (string) replicator models proposed recently are all attempts to explain on this basis how the genetic information transfer and the functional diversity of prebiotic replicator systems may have emerged, persisted and evolved into the first living cell. We have postulated three necessary conditions for an RNA World model system to be a dynamically feasible representation of prebiotic chemical evolution: (1) it must maintain and transfer a sufficient diversity of information reliably and indefinitely, (2) it must be ecologically stable and (3) it must be evolutionarily stable. In this review, we discuss the best-known prebiotic scenarios and the corresponding models of string-replicator dynamics and assess them against these criteria. We suggest that the most popular of prebiotic replicator systems, the hypercycle, is probably the worst performer in almost all of these respects, whereas a few other model concepts (parabolic replicator, open chaotic flows, stochastic corrector, metabolically coupled replicator system) are promising candidates for development into coherent models that may become experimentally accessible in the future.
机译:到目前为止,与地球生命起源有关的最可靠的科学范例无疑是RNA世界。它基于这样一个假设:催化活性复制子(最可能是RNA样大分子)可能在40亿年前就已经导致了生命的增长。最近提出的核苷酸序列(字符串)复制子模型的许多不同形式都是在此基础上试图解释遗传信息传递和益生元复制子系统的功能多样性如何可能出现,持续存在并进化为第一个活细胞的尝试。我们假设RNA世界模型系统能够动态地表示益生元化学演化的三个必要条件:(1)它必须可靠且无限地保持和传递足够多的信息多样性;(2)它必须在生态上稳定并且(( 3)它必须是进化稳定的。在这篇综述中,我们讨论了最著名的益生元场景和字符串复制器动力学的相应模型,并根据这些标准对其进行了评估。我们建议,在几乎所有这些方面,最流行的益生元复制系统,即高循环系统,可能是表现最差的,而其他一些模型概念(抛物线复制器,开放混沌流动,随机校正器,代谢耦合复制器系统)则有望开发为连贯模型的候选对象,这些模型将来可能通过实验获得。

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