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Horizontal transfer of code fragments between protocells can explain the origins of the genetic code without vertical descent

机译:原始细胞之间代码片段的水平转移可以解释遗传密码的起源而无需垂直下降

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摘要

Theories of the origin of the genetic code typically appeal to natural selection and/or mutation of hereditable traits to explain its regularities and error robustness, yet the present translation system presupposes high-fidelity replication. Woese’s solution to this bootstrapping problem was to assume that code optimization had played a key role in reducing the effect of errors caused by the early translation system. He further conjectured that initially evolution was dominated by horizontal exchange of cellular components among loosely organized protocells (“progenotes”), rather than by vertical transmission of genes. Here we simulated such communal evolution based on horizontal transfer of code fragments, possibly involving pairs of tRNAs and their cognate aminoacyl tRNA synthetases or a precursor tRNA ribozyme capable of catalysing its own aminoacylation, by using an iterated learning model. This is the first model to confirm Woese’s conjecture that regularity, optimality, and (near) universality could have emerged via horizontal interactions alone.
机译:遗传密码起源的理论通常会吸引自然选择和/或可遗传性状的突变,以解释其规律性和错误鲁棒性,但是目前的翻译系统以高保真复制为前提。 Woese针对此自举问题的解决方案是假定代码优化在减少早期翻译系统所导致的错误影响方面起着关键作用。他进一步推测,最初的进化主要是由松散组织的原始细胞(“先祖”)之间的细胞成分水平交换而不是基因的垂直传播所主导。在这里,我们基于水平的代码片段转移模拟了这种公共进化,可能涉及成对的tRNA及其同源的氨基酰基tRNA合成酶或能够催化自身氨基酰化的前体tRNA核酶,方法是使用迭代学习模型。这是第一个证实Woese的猜想的模型,即仅通过水平交互作用就可以出现规律性,最优性和(接近)普遍性。

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