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Insuperable problems of the genetic code initially emerging in an RNA world

机译:最初在RNA世界中出现的遗传密码的难以忍受的问题

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摘要

AbstractDifferential equations for error-prone information transfer (template replication, transcription or translation) are developed in order to consider, within the theory of autocatalysis, the advent of coded protein synthesis. Variations of these equations furnish a basis for comparing the plausibility of contrasting scenarios for the emergence of specific tRNA aminoacylation, ultimately by enzymes, and the relationship of this process with the origin of the universal system of molecular biological information processing embodied in the Central Dogma. The hypothetical RNA World does not furnish an adequate basis for explaining how this system came into being, but principles of self-organisation that transcend Darwinian natural selection furnish an unexpectedly robust basis for a rapid, concerted transition to genetic coding from a peptide·RNA world.]]>
机译:<![cdata [ 抽象 开发出错误易于信息传输的差分方程(模板复制,转录或翻译),以便在自催化理论内考虑编码蛋白质合成的出现。这些等式的变化提供了比较对比情景的合理性,以使对比度方案的合理性进行比较特异性TRNA氨基酰化的粘合性,以及该过程与中央教条中体现的分子生物学信息处理的普遍系统的起源的关系。假设的RNA世界不提供足够的基础,以便解释该系统如何成为如何存在,而是将达尔文自然选择的自我组织原则提供出乎意料的强大的速率,从肽·RNA世界到遗传编码的遗传编码。 。 ]]>

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