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A colorful origin for the genetic code: Information theory, statistical mechanics and the emergence of molecular codes

机译:遗传密码的丰富起源:信息理论,统计力学和分子密码的出现

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The genetic code maps the sixty-four nucleotide triplets (codons) to twenty amino-acids. While the biochemical details of this code were unraveled long ago, its origin is still obscure. We review information-theoretic approaches to the problem of the code's origin and discuss the results of a recent work that treats the code in terms of an evolving, error-prone information channel. Our model - which utilizes the rate-distortion theory of noisy communication channels - suggests that the genetic code originated as a result of the interplay of the three conflicting evolutionary forces: the needs for diverse amino-acids, for error-tolerance and for minimal cost of resources. The description of the code as an information channel allows us to mathematically identify the fitness of the code and locate its emergence at a second-order phase transition when the mapping of codons to amino-acids becomes nonrandom. The noise in the channel brings about an error-graph, in which edges connect codons that are likely to be confused. The emergence of the code is governed by the topology of the error-graph, which determines the lowest modes of the graph-Laplacian and is related to the map coloring problem.
机译:遗传密码将64个核苷酸的三元组(密码子)映射为20个氨基酸。尽管该法规的生化细节很久以前尚未阐明,但其起源仍不清楚。我们回顾了信息理论上解决代码起源问题的方法,并讨论了最近工作的结果,该工作根据不断发展的,易于出错的信息渠道来对待代码。我们的模型利用了嘈杂的沟通渠道的速率失真理论,表明遗传密码是由三种相互冲突的进化力相互作用而产生的:对多种氨基酸的需求,对误差的耐受性以及最低的成本资源。将代码描述为一个信息通道,使我们能够从数学上识别代码的适用性,并在密码子与氨基酸的映射变为非随机时将其出现定位在第二阶相变中。通道中的噪声会产生一个误差图,在误差图中边缘连接可能会混淆的密码子。代码的出现是由错误图的拓扑决定的,该拓扑确定了图-拉普拉斯算子的最低模式,并且与地图着色问题有关。

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