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Universal Rules Governing Genome Evolution Expressed by Linear Formulas

机译:线性公式表达的基因组进化通用规则

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Codon evolution is influenced by an organelle-specific bias existing within cellular compartments. The discoveryof evidence that codon evolution is controlled by different factors among nuclei, mitochondria and chloroplasts, indicatesthe existence of biases based on what we term “organelle biases”. In plant chloroplasts and mitochondria, nucleotidesubstitutions, based on the correlations among nucleotides, were governed by the linear formula, y = ax + b, where y and xrepresent nucleotide contents, and a and b are constants. In animal mitochondria, with respect to the correlations betweeneach nucleotide, only the correlations between purines (A versus G) or pyrimidines (C versus T) were almost linear, whilethe other correlations between purine and pyrimidine (A or G versus T or C) were not. However, nucleotide substitutions,based on the correlations of the same nucleotide between complete single-strand DNA and its coding or non-coding region,were always linear, y = ax + b, in any organelle. Linear correlations of the same nucleotide were also obtained betweencoding and non-coding region DNAs. The present results clearly reveal evidence that genome evolution is governedby universal linear formulas, although different rules are apparently observed in the different organelle fields formed bynuclei, mitochondria and chloroplasts. This report quantitatively demonstrates the existence of factors controlling genomeevolution that are expressed by linear formulas.
机译:密码子的进化受到细胞隔室内存在的细胞器特异性偏见的影响。密码子进化受细胞核,线粒体和叶绿体中不同因素控制的证据的发现,表明存在基于我们所谓的“细胞器偏见”的偏见。在植物叶绿体和线粒体中,基于核苷酸之间的相关性,核苷酸取代由线性公式y = ax + b控制,其中y和x代表核苷酸含量,而a和b是常数。在动物线粒体中,就每个核苷酸之间的相关性而言,只有嘌呤(A与G)或嘧啶(C与T)之间的相关性几乎是线性的,而嘌呤与嘧啶之间的其他相关性(A或G与T或C)的相关性是线性的不。然而,基于完整单链DNA与其编码或非编码区之间相同核苷酸的相关性,核苷酸取代在任何细胞器中总是线性的,y = ax + b。在编码区和非编码区DNA之间也获得了相同核苷酸的线性相关性。尽管在由核,线粒体和叶绿体形成的不同细胞器场中显然观察到不同的规则,但目前的结果清楚地揭示了基因组进化受通用线性公式支配的证据。该报告定量地证明了存在由线性公式表示的控制基因组进化的因素。

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