Thomas W K, Wilson A C
Division of Biochemistry and Molecular Biology, University of California, Berkeley 94720.
Genetics. 1991 Jun;128(2):269-79. doi: 10.1093/genetics/128.2.269.
Through direct sequencing methods, the mitochondrial gene for cytochrome oxidase subunit two (CO II) and the single-copy nuclear gene for calmodulin were compared among strains of Caenorhabidits elegans and two other Caenorhabditis species (C. remanei and C. briggsae). In addition the CO II sequence was determined from a distantly related nematode, Steinernema intermedii. Among the 11 strains of C. elegans tested, there are four types of CO II gene, arising from two major lineages. Levels of intraspecific difference in the CO II gene are low (less than 2.0%) compared to the extraordinary divergence between congeneric species, which is about 50% when corrected for multiple hits. Concordant with the increase in divergence between taxa is a change in the pattern of substitution from a strong transition bias (24 transitions compared to two transversions) within species to a substitution pattern that appears to reflect the base composition of the mitochondrial genome when more divergent nematodes are compared. The base composition of the Caenorhabditis CO II gene is strongly biased toward A + T at all three positions of codons and appears to constrain the amino acid composition of the protein. Both the CO II and calmodulin genes show extreme conservation of amino acid sequences. When the accumulation of changes at silent sites in the two genes is compared among strains, it becomes evident that the mitochondrial gene is changing faster than the nuclear gene.
通过直接测序方法,对秀丽隐杆线虫的多个菌株以及另外两种秀丽隐杆线虫物种(雷氏秀丽隐杆线虫和briggsae秀丽隐杆线虫)的细胞色素氧化酶亚基二(CO II)线粒体基因和钙调蛋白单拷贝核基因进行了比较。此外,还测定了远缘线虫中间斯氏线虫的CO II序列。在所测试的11个秀丽隐杆线虫菌株中,CO II基因有四种类型,源自两个主要谱系。与同属物种之间的巨大差异(校正多重命中后约为50%)相比,CO II基因的种内差异水平较低(小于2.0%)。与分类单元之间差异的增加相一致的是,替代模式发生了变化,从物种内强烈的转换偏向(24次转换与2次颠换相比)变为在比较亲缘关系更远的线虫时似乎反映线粒体基因组碱基组成的替代模式。秀丽隐杆线虫CO II基因的碱基组成在密码子的所有三个位置都强烈偏向A + T,并且似乎限制了蛋白质的氨基酸组成。CO II和钙调蛋白基因都显示出氨基酸序列的极度保守性。当比较菌株中两个基因沉默位点的变化积累时,很明显线粒体基因的变化比核基因快。