Sharp P M, Li W H
Department of Genetics, Trinity College, Dublin, Ireland.
J Mol Evol. 1989 May;28(5):398-402. doi: 10.1007/BF02603075.
Analysis of the rate of nucleotide substitution at silent sites in Drosophila genes reveals three main points. First, the silent rate varies (by a factor of two) among nuclear genes; it is inversely related to the degree of codon usage bias, and so selection among synonymous codons appears to constrain the rate of silent substitution in some genes. Second, mitochondrial genes may have evolved only as fast as nuclear genes with weak codon usage bias (and two times faster than nuclear genes with high codon usage bias); this is quite different from the situation in mammals where mitochondrial genes evolve approximately 5-10 times faster than nuclear genes. Third, the absolute rate of substitution at silent sites in nuclear genes in Drosophila is about three times higher than the average silent rate in mammals.
对果蝇基因沉默位点处核苷酸替换率的分析揭示了三个要点。第一,沉默率在核基因之间存在差异(相差两倍);它与密码子使用偏好程度呈负相关,因此同义密码子之间的选择似乎会限制某些基因中沉默替换的速率。第二,线粒体基因的进化速度可能仅与密码子使用偏好较弱的核基因一样快(比密码子使用偏好高的核基因快两倍);这与哺乳动物的情况截然不同,在哺乳动物中,线粒体基因的进化速度比核基因快约5至10倍。第三,果蝇核基因中沉默位点处的绝对替换率比哺乳动物的平均沉默率高约三倍。