首页> 外文期刊>Journal of Molecular Evolution >Was Wright Right? The Canonical Genetic Code is an Empirical Example of an Adaptive Peak in Nature; Deviant Genetic Codes Evolved Using Adaptive Bridges
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Was Wright Right? The Canonical Genetic Code is an Empirical Example of an Adaptive Peak in Nature; Deviant Genetic Codes Evolved Using Adaptive Bridges

机译:赖特对吗?规范遗传密码是自然界中一个适应性高峰的一个经验例子。使用自适应桥进化的偏差遗传密码

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摘要

The canonical genetic code is on a sub-optimal adaptive peak with respect to its ability to minimize errors, and is close to, but not quite, optimal. This is demonstrated by the near-total adjacency of synonymous codons, the similarity of adjacent codons, and comparisons of frequency of amino acid usage with number of codons in the code for each amino acid. As a rare empirical example of an adaptive peak in nature, it shows adaptive peaks are real, not merely theoretical. The evolution of deviant genetic codes illustrates how populations move from a lower to a higher adaptive peak. This is done by the use of adaptive bridges, neutral pathways that cross over maladaptive valleys by virtue of masking of the phenotypic expression of some maladaptive aspects in the genotype. This appears to be the general mechanism by which populations travel from one adaptive peak to another. There are multiple routes a population can follow to cross from one adaptive peak to another. These routes vary in the probability that they will be used, and this probability is determined by the number and nature of the mutations that happen along each of the routes. A modification of the depiction of adaptive landscapes showing genetic distances and probabilities of travel along their multiple possible routes would throw light on this important concept.
机译:就其使错误最小化的能力而言,规范遗传密码处于次优的自适应峰上,并且接近但不完全是最优的。这由同义密码子的几乎全部相邻,相邻密码子的相似性以及每种氨基酸代码中氨基酸使用频率与密码子数量的比较来证明。作为自然界中自适应峰的一个罕见的经验示例,它表明自适应峰是真实的,而不仅仅是理论上的。变异遗传密码的演变说明了种群如何从较低的适应性峰向较高的适应性峰移动。这是通过利用适应性桥梁,通过掩盖基因型某些适应不良方面的表型表达的跨越适应不良谷的中性途径来完成的。这似乎是种群从一个适应性峰移动到另一适应性峰的一般机制。种群可以遵循多种途径从一个适应峰过渡到另一峰。这些途径使用它们的可能性各不相同,而这种可能性由沿着每条途径发生的突变的数量和性质决定。修改适应性景观的描述以显示遗传距离和沿其多种可能路线的行驶概率,将使这个重要概念变得清晰。

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