Yockey H P
Comput Chem. 2000 Jan;24(1):105-23. doi: 10.1016/s0097-8485(99)00050-9.
The genetic information system is segregated, linear and digital. It is astonishing that the technology of information theory and coding theory has been in place in biology for at least 3.850 billion years (Mojzsis, S.J., Kishnamurthy, Arrhenius, G., 1998. Before RNA and after: geological and geochemical constraints on molecular evolution 1-47. In: Gesteland, R.F. (Ed.), The RNA World: The Nature of Modern RNA Suggests a Prebiotic RNA, second ed. Cold Spring Harbor Laboratory Press, Boca Raton, FL). The genetic code performs a mapping between the sequences of the four nucleotides in mRNA to the sequences of the 20 amino acids in protein. It is highly relevant to the origin of life that the genetic code is constructed to confront and solve the problems of communication and recording by the same principles found both in the genetic information system and in modern computer and communication codes. There is nothing in the physico-chemical world that remotely resembles reactions being determined by a sequence and codes between sequences. The existence of a genome and the genetic code divides living organisms from non-living matter. If the historic process of the origin and evolution of life could be followed, it would prove to be a purely chemical process (Wächtershäuser, G., 1997. The origin of life and its methodological challenge. J. Theor. Biol. 187, 483-694). The question is whether this historic process or any reasonable part of it is available to human experiment and reasoning; there is no requirement that Nature's laws be plausible or even known to mankind. Bohr (Bohr, N., 1933. Light and life. Nature 308, 421-423, 456-459) argued that life is consistent with but undecidable by human reasoning from physics and chemistry. Perhaps scientists will come closer and closer to the riddle of how life emerged on Earth, but, like Zeno's Achilles, never achieve a complete solution.
遗传信息系统是分离的、线性的和数字的。令人惊讶的是,信息论和编码理论的技术在生物学中已经存在了至少38.5亿年(莫伊西斯,S.J.,基什纳穆尔蒂,阿雷尼乌斯,G.,1998年。在RNA之前和之后:分子进化的地质和地球化学限制1 - 47。载于:格斯特兰德,R.F.(编),《RNA世界:现代RNA的本质暗示了前生物RNA》,第二版。冷泉港实验室出版社,佛罗里达州博卡拉顿)。遗传密码在信使核糖核酸(mRNA)中四种核苷酸的序列与蛋白质中20种氨基酸的序列之间进行映射。遗传密码按照与遗传信息系统以及现代计算机和通信编码中相同的原理构建,以应对和解决通信与记录问题,这与生命起源高度相关。在物理化学世界中,没有任何东西与由序列以及序列之间的编码所决定的反应有丝毫相似之处。基因组和遗传密码的存在将生物与非生物区分开来。如果能够追踪生命起源和进化的历史过程,将会证明它是一个纯粹的化学过程(瓦赫特绍泽,G.,1997年。生命的起源及其方法论挑战。《理论生物学杂志》187,483 - 694)。问题在于这个历史过程或其中任何合理的部分是否可供人类进行实验和推理;并不要求自然规律对人类来说是合理的甚至是已知的。玻尔(玻尔,N.,1933年。光与生命。《自然》308,421 - 423,456 - 459)认为生命与基于物理和化学的人类推理相一致,但无法由其判定。也许科学家们会越来越接近地球生命如何出现的谜团,但就像芝诺的阿喀琉斯一样,永远无法得到完整的解决方案。