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A Model of Evolutionary Base Substitutions and Its Application with Special Reference to Rapid Change of Pseudogenes

机译:进化碱基取代模型及其在伪基因快速变化中的应用

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摘要

A model of evolutionary base substitutions that can incorporate different substitutional rates between the four bases and that takes into account unequal composition of bases in DNA sequences is proposed. Using this model, we derived formulae that enable us to estimate the evolutionary distances in terms of the number of nucleotide substitutions through comparative studies of nucleotide sequences. In order to check the validity of various formulae, Monte Carlo experiments were performed. These formulae were applied to analyze data on DNA sequences from diverse organisms. Particular attention was paid to problems concerning a globin pseudogene in the mouse and the time of its origin through duplication. We obtained a result suggesting that the evolutionary rates of substitution in the first and second codon positions of the pseudogene were roughly 10 times faster than those in the normal globin genes; whereas, the rate in the third position remained almost unchanged. Application of our formulae to histone genes H2B and H3 of the sea urchin showed that, in each of these genes, the rate in the third codon position is tremendously higher than that in the second position. All of these observations can easily and consistently be interpreted by the neutral theory of molecular evolution.
机译:提出了一种进化性碱基替换模型,该模型可以在四个碱基之间引入不同的替换率,并且考虑到DNA序列中碱基组成的不相等。使用该模型,我们得出了一些公式,这些公式使我们能够通过核苷酸序列的比较研究,根据核苷酸取代的数量来估计进化距离。为了检查各种公式的有效性,进行了蒙特卡洛实验。这些公式适用于分析来自各种生物的DNA序列的数据。特别关注与小鼠中的球蛋白假基因有关的问题及其通过复制的起源时间。我们得到的结果表明,假基因的第一个和第二个密码子位置的替代进化速率比正常的珠蛋白基因的进化速率快约10倍。而第三名的比率几乎保持不变。将公式应用于海胆的组蛋白基因H2B和H3表明,在每个这些基因中,第三个密码子位置的比率都大大高于第二个密码子位置的比率。所有这些观察结果都可以用中性的分子进化理论轻松而一致地解释。

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