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Evolutionary Rates and Expression Level in Chlamydomonas

机译:衣藻的进化速度和表达水平。

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摘要

In many biological systems, especially bacteria and unicellular eukaryotes, rates of synonymous and nonsynonymous nucleotide divergence are negatively correlated with the level of gene expression, a phenomenon that has been attributed to natural selection. Surprisingly, this relationship has not been examined in many important groups, including the unicellular model organism Chlamydomonas reinhardtii. Prior to this study, comparative data on protein-coding sequences from C. reinhardtii and its close noninterfertile relative C. incerta were very limited. We compiled and analyzed protein-coding sequences for 67 nuclear genes from these taxa; the sequences were mostly obtained from the C. reinhardtii EST database and our C. incerta EST data. Compositional and synonymous codon usage biases varied among genes within each species but were highly correlated between the orthologous genes of the two species. Relative rates of synonymous and nonsynonymous substitution across genes varied widely and showed a strong negative correlation with the level of gene expression estimated by the codon adaptation index. Our comparative analysis of substitution rates in introns of lowly and highly expressed genes suggests that natural selection has a larger contribution than mutation to the observed correlation between evolutionary rates and gene expression level in Chlamydomonas.
机译:在许多生物系统中,尤其是细菌和单细胞真核生物,同义和非同义核苷酸差异的发生率与基因表达水平负相关,这种现象归因于自然选择。令人惊讶的是,这种关系尚未在许多重要的群体中得到检验,包括单细胞模型生物莱茵衣藻。在此研究之前,来自莱茵衣藻及其近亲非干扰亲缘衣藻的蛋白质编码序列的比较数据非常有限。我们编译并分析了这些分类单元中67个核基因的蛋白质编码序列。这些序列大部分是从莱茵衣藻EST数据库和我们的不合格衣藻EST数据获得的。组成和同义密码子使用偏倚在每个物种内的基因之间变化,但在两个物种的直系同源基因之间高度相关。基因间同义和非同义替换的相对比率差异很大,并且与密码子适应指数估计的基因表达水平显示出强烈的负相关性。我们对低表达和高表达基因的内含子中替代率的比较分析表明,自然选择对衣藻的进化率与基因表达水平之间的相关性的影响远大于突变。

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