首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Codon Usages of Genes on Chromosome and Surprisingly Genes in Plasmid are Primarily Affected by Strand-specific Mutational Biases in Lawsonia intracellularis
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Codon Usages of Genes on Chromosome and Surprisingly Genes in Plasmid are Primarily Affected by Strand-specific Mutational Biases in Lawsonia intracellularis

机译:染色体上基因的密码子用法令人惊讶的是质粒中的基因主要受胞内劳森菌的链特异性突变偏向酶影响

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摘要

In this study, the factors driving genome-wide patterns of codon usages in Lawsonia intracellularis genome are determined. For genes on the chromosome of the bacterium, it is found that the most important source of variation results from strand-specific mutational biases. A lesser trend of variation is attributable to genes that are presumed as horizontally transferred. These putative alien genes are unusually GC richer than the other genes, whereas horizontally transferred genes have been observed to be AT rich in bacteria with medium and relatively low G + C contents. Hydropathy of encoded protein and expression level are also found to influence codon usage. Therefore, codon usage in L. intracellularis chromosome is the result of a complex balance among the different mutational and selectional factors. When analyzing genes in the largest plasmid, for the first time it is found that the strand-specific mutational biases are responsible for the primary variation of codon usages in plasmid. Genes, particularly highly expressed genes of this plasmid, are mainly located on the leading strands and this supposed to be the effects exerted by replicational–transcriptional selection. These facts suggest that this plasmid adopts the similar mechanism of replication as the chromosome in L. intracellularis. Common characters among the 10 bacteria in whose genomes the strand-specific mutational biases are the primary source of variation of codon usage are also investigated. For example, it is found that genes dnaT and fis that are involved in DNA replication initiation and re-initiation pathways are absent in all of the 10 bacteria.
机译:在这项研究中,确定了驱动胞内劳森菌基因组中密码子使用的全基因组模式的因素。对于细菌染色体上的基因,发现最重要的变异来源是链特异性突变偏倚。较小的变异趋势归因于假定为水平转移的基因。这些推定的外源基因通常比其他基因的GC含量高,而水平转移的基因在AT中富含G + C含量相对较低的细菌。还发现编码蛋白的亲水性和表达水平会影响密码子的使用。因此,胞内劳森氏菌染色体中的密码子使用是不同突变和选择因子之间复杂平衡的结果。在分析最大质粒中的基因时,首次发现链特异性突变偏向是质粒中密码子使用情况的主要变化。基因,特别是该质粒的高表达基因,主要位于前导链上,这可能是复制-转录选择所产生的作用。这些事实表明该质粒采用与细胞内劳森氏菌中的染色体相似的复制机制。还研究了10个细菌的共同特征,这些细菌的基因组中链特异性突变偏向是密码子使用变异的主要来源。例如,发现在所有10种细菌中都没有涉及DNA复制起始和重新起始途径的基因dnaT和fis。

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