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An analytical model of gene evolution with six mutation parameters:An application to archaeal circular codes

机译:具有六个突变参数的基因进化分析模型:在古细菌圆形密码中的应用

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We develop here an analytical evolutionary model based on a trinucleotide mutation matrix 64 x 64 with six substitution parameters associated with the transitions and transversions in the three trinucleotide sites.It generalizes the previous models based on the nucleotide mutation matrices 4X4 and the trinucleotide mutation matrix 64 x 64 with three parameters.It determines at some time t the exact occurrence probabilities of trinucleotides mutating randomly according to six substitution parameters.An application of this model allows an evolutionary study of the common circular code COM and the 15 archaeal circular codes X which have been recently identified in several archaeal genomes.The main property of a circular code is the retrieval of the reading frames in genes,both locally,i.e.anywhere in genes and in particular without a start codon,and automatically with a window of a few nucleotides.In genes,the circular code is superimposed on the traditional genetic one.Very unexpectedly,the evolutionary model demonstrates that the archaeal circular codes can derive from the common circular code subjected to random substitutions with particular values for six substitutions parameters.It has a strong correlation with the statistical observations of three archaeal codes in actual genes.Furthermore,the properties of these substitution rates allow proposal of an evolutionary classification of the 15 archaeal codes into three main classes according to this model.In almost all the cases,they agree with the actual degeneracy of the genetic code with substitutions more frequent in the third trinucleotide site and with transitions more frequent that transversions in any trinucleotide site.
机译:我们在此基于三核苷酸突变矩阵64 x 64开发了一个分析进化模型,该模型具有与三个三核苷酸位点的过渡和颠换相关的六个替换参数,它基于核苷酸突变矩阵4X4和三核苷酸突变矩阵64概括了先前的模型。带有三个参数的x 64,它可以在t时刻根据六个替换参数确定随机发生突变的三核苷酸的确切发生概率,该模型的应用使得可以对共同的循环编码COM和15个古细菌循环编码X进行进化研究。最近已经在几个古细菌基因组中鉴定出了环状密码。循环密码的主要特性是在基因中,局部,即基因中的任何地方,特别是没有起始密码子的情况下,自动检索具有几个核苷酸窗口的基因中的阅读框。在基因中,循环密码叠加在传统的遗传密码上。非常出乎意料的是,进化模型表明,古细菌圆环密码可以从经过六次替换参数特定值的随机替换的通用圆环密码中衍生而来,与实际基因中三个古细菌密码的统计观察结果有很强的相关性。这些取代率允许根据该模型将15种古细菌密码进化分类为三个主要类别。在几乎所有情况下,它们都与遗传密码的实际简并性相符,在第三三核苷酸位点的替换频率更高,转换比在任何三核苷酸位点的转换更频繁。

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