Zhang Liqing, Vision Todd J, Gaut Brandon S
Department of Ecology and Evolutionary Biology, University of California, Irvine, 92697-2525, USA.
Mol Biol Evol. 2002 Sep;19(9):1464-73. doi: 10.1093/oxfordjournals.molbev.a004209.
We characterized rates and patterns of synonymous and nonsynonymous substitution in 242 duplicated gene pairs on chromosomes 2 and 4 of Arabidopsis thaliana. Based on their collinear order along the two chromosomes, the gene pairs were likely duplicated contemporaneously, and therefore comparison of genetic distances among gene pairs provides insights into the distribution of nucleotide substitution rates among plant nuclear genes. Rates of synonymous substitution varied 13.8-fold among the duplicated gene pairs, but 90% of gene pairs differed by less than 2.6-fold. Average nonsynonymous rates were approximately fivefold lower than average synonymous rates; this rate difference is lower than that of previously studied nonplant lineages. The coefficient of variation of rates among genes was 0.65 for nonsynonymous rates and 0.44 for synonymous rates, indicating that synonymous and nonsynonymous rates vary among genes to roughly the same extent. The causes underlying rate variation were explored. Our analyses tentatively suggest an effect of physical location on synonymous substitution rates but no similar effect on nonsynonymous rates. Nonsynonymous substitution rates were negatively correlated with GC content at synonymous third codon positions, and synonymous substitution rates were negatively correlated with codon bias, as observed in other systems. Finally, the 242 gene pairs permitted investigation of the processes underlying divergence between paralogs. We found no evidence of positive selection, little evidence that paralogs evolve at different rates, and no evidence of differential codon usage or third position GC content.
我们对拟南芥2号和4号染色体上242对重复基因对中的同义替换和非同义替换的速率及模式进行了表征。基于它们在两条染色体上的共线顺序,这些基因对可能是同时期重复的,因此对基因对间遗传距离的比较有助于深入了解植物核基因中核苷酸替换速率的分布情况。在这些重复基因对中,同义替换速率相差13.8倍,但90%的基因对差异小于2.6倍。平均非同义速率比平均同义速率低约五倍;这种速率差异低于先前研究的非植物谱系。基因间速率的变异系数,非同义速率为0.65,同义速率为0.44,这表明同义速率和非同义速率在基因间的变化程度大致相同。我们探究了速率变异的潜在原因。我们的分析初步表明物理位置对同义替换速率有影响,但对非同义速率没有类似影响。如在其他系统中所观察到的,非同义替换速率与同义第三位密码子位置的GC含量呈负相关,同义替换速率与密码子偏好性呈负相关。最后,这242对基因对使得对旁系同源基因间分化的潜在过程进行研究成为可能。我们没有发现正选择的证据,几乎没有证据表明旁系同源基因以不同速率进化,也没有发现密码子使用差异或第三位GC含量差异的证据。