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An Autotrophic Origin for the Coded Amino Acids is Concordant with the Coevolution Theory of the Genetic Code

机译:编码氨基酸的自养起源与遗传密码的协同进化理论一致

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The coevolution theory of the origin of the genetic code maintains that the biosynthetic relationships between amino acids co-evolved with the genetic code organization. In other words, the metabolism of amino acids co-evolved with the organization of the genetic code because the biosynthetic pathways of amino acids occurred on tRNA-like molecules. Thus, a heterotrophic origin of amino acids-also only of those involved in the early phase of the structuring of the genetic code-would seem to contradict the main postulate of the coevolution theory. As a matter of fact, this origin not being linked to the metabolism of amino acids in any way-being taken from a physical setting-would seem to remove the possibility that this metabolism had instead heavily contributed to the structuring of the genetic code. Therefore, I have analyzed the structure of the genetic code and mechanisms that brought to its structuring for understanding if the coevolution theory is compatible with autotrophic or heterotrophic conditions. One of the arguments was that an autotrophic origin of amino acids would have the advantage to be able to directly link their metabolism to the structure of the genetic code if-as hypothesized by the coevolution theory-the biosyntheses of amino acids occurred on tRNA-like molecules. Simultaneously, a heterotrophic origin would not have been able to link the metabolism of amino acids to the structure of the genetic code for the absence of a precise determinism of allocation of amino acids, that is to say of a clear mechanism-linked to tRNA-like molecules, for example-that would have determined the specific pattern observed in the genetic code of the biosynthetic relationships between amino acids. The conclusion is that an autotrophic origin of coded amino acids would seem to be the condition under which the genetic code originated.
机译:遗传密码起源的协同进化理论认为,氨基酸之间的生物合成关系与遗传密码组织共同进化。换句话说,氨基酸的代谢与遗传密码的组织共同发展,因为氨基酸的生物合成途径发生在tRNA样分子上。因此,氨基酸的异养起源-也只有那些参与遗传密码结构早期阶段的氨基酸-似乎与共同进化理论的主要假设相矛盾。事实上,这种起源与氨基酸的代谢没有任何联系(从物理环境中获取)似乎消除了这种代谢反而对遗传密码的结构做出了重大贡献的可能性。因此,我分析了遗传密码的结构和构成其结构的机制,以了解协同进化理论是否与自养或异养条件兼容。一种论据是,氨基酸的自养起源将具有以下优势:如果按照协同进化理论的假设,氨基酸的生物合成发生在类似tRNA的氨基酸上,则能够直接将其代谢与遗传密码的结构联系起来。分子。同时,由于缺乏精确的氨基酸分配决定性,即与tRNA相关的明确机制,异养起源将无法将氨基酸的代谢与遗传密码的结构联系起来。例如分子,它们将确定在氨基酸之间生物合成关系的遗传密码中观察到的特定模式。结论是,编码氨基酸的自养起源似乎是遗传密码起源的条件。

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