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A ribonucleotide Origin for Life – Fluctuation and Near-ideal Reactions

机译:生命的核糖核苷酸起源–波动和近乎理想的反应

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摘要

Oligoribonucleotides are potentially capable of Darwinian evolution – they may replicate and can express an independent chemical phenotype, as embodied in modern enzymatic cofactors. Using quantitative chemical kinetics on a sporadically fed ribonucleotide pool, unreliable supplies of unstable activated ribonucleotides A and B at low concentrations recurrently yield a replicating AB polymer with a potential chemical phenotype. Self-complementary replication in the pool occurs during a minority (here ≈ 35 %) of synthetic episodes that exploit coincidental overlaps between 4, 5 or 6 spikes of arbitrarily arriving substrates. Such uniquely productive synthetic episodes, in which near-ideal reaction sequences recur at random, account for most AB oligonucleotide synthesis, and therefore underlie the emergence of net replication under realistic primordial conditions. Because overlapping substrate spikes are unexpectedly frequent, and in addition, complex spike sequences appear disproportionately, a sporadically fed pool can host unexpectedly complex syntheses. Thus, primordial substrate fluctuations are not necessarily a barrier to Darwinism, but instead can facilitate early evolution.
机译:寡核糖核苷酸可能具有达尔文进化的能力-它们可以复制并可以表达独立的化学表型,正如现代酶促因子所体现的那样。使用偶发补给的核糖核苷酸库中的定量化学动力学,不稳定的活化核糖核苷酸A和B在低浓度下的不可靠供应会反复产生具有潜在化学表型的可复制AB聚合物。池中的自我互补复制发生在少数(这里≈35%)的合成事件中,这些事件利用了任意到达的底物的4、5或6个尖峰之间的巧合重叠。这种独特的生产性合成事件(其中近乎理想的反应序列随机发生)是AB寡核苷酸合成的主要部分,因此是在原始原始条件下网络复制出现的基础。因为重叠的底物尖峰出乎意料地频繁发生,并且此外,复杂的尖峰序列不成比例地出现,所以零星地补给的池可以容纳出乎意料的复杂合成。因此,原始的底物波动不一定是达尔文主义的障碍,而是可以促进早期进化。

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