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Monte Carlo simulation of early molecular evolution in the RNA World

机译:RNA世界中早期分子进化的蒙特卡洛模拟

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The origin of life remains a highly speculative field, mainly due to the shortage of our knowledge on prebiotic chemistry and basic understanding on the essence of life. In this context, computer simulation is expected to play an important role. For instance, the scenario concerning the genesis of the widely accepted RNA World remains blurry, though we have gathered some circumstantial evidence and fragmented knowledge on several supposed stages, including formation of polynucleotides from a prebiotic nucleotide pool, emergence of RNA replicases (RNA molecules catalyzing their own replication), and evolution of RNA replicases. It is highly valuable to simulate the stages as a continuous process to evaluate the plausibility of the supposition and study the rules involved. Here we construct a computer simulation on the process using Monte Carlo method. It demonstrates that primordial RNA replicases may appear and spread in a nucleotide pool provided they could recognize their own sequence and their complements as catalytic targets, and then may evolve to more efficient RNA replicases. Apart from its indication on the genesis of the RNA World, the vivid simulation of emergence of the “first replicative molecules” and their subsequent evolution is impressive and may help to get insight into “how could self-replication and Darwinian evolution, two key features of life, emerge in a non-life background?” thus improve our understanding of “what is life” when studying origins of life.
机译:生命起源仍然是一个高度投机的领域,这主要是由于我们对益生元化学的了解不足以及对生命本质的基本了解。在这种情况下,计算机模拟有望发挥重要作用。例如,尽管我们已经收集了一些环境证据和关于几个假设阶段的零碎知识,其中包括从益生元核苷酸库中形成多核苷酸,RNA复制品的出现(RNA分子催化自身复制)和RNA复制的进化。将阶段模拟为连续过程以评估假设的合理性并研究所涉及的规则非常有价值。在这里,我们使用蒙特卡洛方法对过程进行计算机模拟。它表明,原始RNA复制可以出现在核苷酸库中并在其中扩散,前提是它们可以识别自己的序列及其互补序列作为催化靶标,然后进化为更有效的RNA复制。除了可以指示“ RNA世界”的起源外,“第一个复制分子”的出现及其后续进化的生动模拟令人印象深刻,并且可能有助于深入了解“自我复制和达尔文进化如何成为两个关键特征”生命,在非生命背景中出现?”因此,在研究生命起源时,可以增进我们对“生命是什么”的理解。

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