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Eighty routes to a ribonucleotide world; dispersion and stringency in the decisive selection

机译:八十路线到核糖核苷酸世界; 决定性选择中的分散和严格

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摘要

We examine the initial emergence of genetics; that is, of an inherited chemical capability. The crucial actors are ribonucleotides, occasionally meeting in a prebiotic landscape. Previous work identified six influential variables during such random ribonucleotide pooling. Geochemical pools can be in periodic danger (e.g., from tides) or constant danger (e.g., from unfavorable weather). Such pools receive Gaussian nucleotide amounts sporadically, at random times, or get varying substrates simultaneously. Pools use cross-templated RNA synthesis (5'-5' product from 5'-3' template) or para-templated (5'-5' product from 5'-5' template) synthesis. Pools can undergo mild or strong selection, and be recently initiated (early) or late in age. Considering 80 combinations of these variables, selection calculations identify a superior route. Most likely, an early, sporadically fed, cross-templating pool in constant danger, receiving = 1 mM nucleotides while under strong selection for a coenzyme-like product, will host selection of the first encoded biochemical functions. Predominantly templated products emerge from a critical event, the starting bloc selection, which exploits inevitable differences among early pools. Favorable selection has a simple rationale; it is increased by product dispersion (SD/mean), by selection intensity (mild or strong), or by combining these factors as stringency, reciprocal fraction of pools selected (1/sfsel). To summarize: chance utility, acting via a preference for disperse, templated coenzyme-like dinucleotides, uses stringent starting bloc selection to quickly establish majority encoded/genetic expression. Despite its computational origin, starting bloc selection is largely independent of specialized assumptions. This ribodinucleotide route to inheritance may also have facilitated 5'-3' chemical RNA replication.
机译:我们检查遗传学的初始出现;也就是说,继承的化学能力中。关键的演员是核糖核苷酸,偶尔在益生元景观中会面。先前的工作在此类随机核糖核苷酸池中确定了六种影响力。地球化学池可以是周期性危险(例如,来自潮汐)或持续危险(例如,来自不利的天气)。这种池在随机时间同时接收高斯核苷酸量,或同时获得不同的基板。游泳池使用跨模板的RNA合成(5'-5'产品从5'-3'模板)或来自5'-5'模板的5'-5'产品)合成。游泳池可以经历轻度或强烈的选择,最近开始(早期)或年末。考虑到这些变量的80组合,选择计算识别卓越的路线。最有可能的是,早期,偶等喂养,跨模板持续危险,接受& = 1mm核苷酸,同时在辅酶样产品的强烈选择下,将宿主选择第一编码的生物化学功能。主要是模板化产品从一个关键的事件中出现,起始集团选择,利用早期池之间不可避免的差异。有利的选择具有简单的理由;通过产品分散(SD /平均值),通过选择强度(轻度或强),或通过将这些因素组合为严格性,所选池的往复部分(1 / SFSEL)来增加。总结:机会效用,通过偏好进行分散的模板化辅酶样二核苷酸,使用严格的起始集团选择来快速建立多数编码/遗传表达。尽管其计算起源,但起始集团选择在很大程度上独立于专门的假设。该核核苷酸途径遗传也可能促进了5'-3'化学RNA复制。

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