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The origin of replicators and reproducers

机译:复制者和复制者的起源

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摘要

Replicators are fundamental to the origin of life and evolvability. Their survival depends on the accuracy of replication and the efficiency of growth relative to spontaneous decay. Infrabiological systems are built of two coupled autocatalytic systems, in contrast to minimal living systems that must comprise at least a metabolic subsystem, a hereditary subsystem and a boundary, serving respective functions. Some scenarios prefer to unite all these functions into one primordial system, as illustrated in the lipid world scenario, which is considered as a didactic example in detail. Experimentally produced chemical replicators grow parabolically owing to product inhibition. A selection consequence is survival of everybody. The chromatographized replicator model predicts that such replicators spreading on surfaces can be selected for higher replication rate because double strands are washed away slower than single strands from the surface. Analysis of real ribozymes suggests that the error threshold of replication is less severe by about one order of magnitude than thought previously. Surface-bound dynamics is predicted to play a crucial role also for exponential replicators: unlinked genes belonging to the same genome do not displace each other by competition, and efficient and accurate replicases can spread. The most efficient form of such useful population structure is encapsulation by reproducing vesicles. The stochastic corrector model shows how such a bag of genes can survive, and what the role of chromosome formation and intragenic recombination could be. Prebiotic and early evolution cannot be understood without the models of dynamics.
机译:复制器对于生命和进化的起源至关重要。它们的存活取决于复制的准确性和相对于自然衰变的生长效率。与必须至少包含一个代谢子系统,一个遗传子系统和一个边界并发挥各自功能的最小生命系统相反,流行病学系统由两个耦合的自催化系统组成。如脂质世界方案中所示,某些方案倾向于将所有这些功能组合到一个原始系统中,该方案被视为详细的教学示例。由于产物抑制作用,实验产生的化学复制子可代谢地生长。选择的结果就是每个人的生存。色谱复制器模型预测,可以选择散布在表面上的复制器以获得更高的复制速率,因为从表面上洗掉双链的速度比单链慢。对真实核酶的分析表明,复制的错误阈值比以前认为的严重程度低了一个数量级。预计表面结合动力学对于指数复制子也将起关键作用:属于同一基因组的未链接基因不会因竞争而彼此置换,并且可以传播高效且准确的复制子。这种有用的种群结构的最有效形式是通过繁殖囊泡进行封装。随机校正器模型显示了这样一袋基因如何生存,以及染色体形成和基因内重组的作用。没有动力学模型,就无法理解益生元和早期进化。

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