Umeda M, Ohtsubo H, Ohtsubo E
Institute of Applied Microbiology, University of Tokyo, Japan.
Jpn J Genet. 1991 Oct;66(5):569-86. doi: 10.1266/jjg.66.569.
The waxy (wx) gene of Oryza glaberrima was cloned, and its nucleotide sequence was determined. A waxy mutant of O. glaberrima showing a glutinous phenotype was found to contain a substitution mutation generating a termination codon in the coding region of the wx gene. The Wx sequence of O. glaberrima was different from that of Oryza sativa by substitutions and insertions/deletions, among which only a few substitutions occurred in several exons not to severely alter the amino acid sequence of the Wx protein. The most striking difference observed in introns was a 139-bp deletion (or insertion) in intron 10 of O. glaberrima (or O. sativa). In O. sativa, 125 bp of the 139-bp sequence was flanked by direct repeats of a 14-bp sequence. A sequence homologous to the 125-bp sequence was found in the region preceding exon 2; this sequence was also flanked by direct repeats of another 14-bp sequence. This result and the observation that the 125-bp sequence was interspersed in rice genomes indicate that they are SINEs (short interspersed elements) in the plant system. We also identified a DNA sequence with long terminal inverted repeats in intron 13 of both O. glaberrima and O. sativa. This sequence was present in multiple copies in rice genomes, suggesting that it is a transposable element. These results obtained suggest that mobile DNA elements have diversified the rice Waxy gene by inserting into introns, each of which may originally have a length of about 100 bp.
克隆了光稃稻的蜡质(wx)基因,并测定了其核苷酸序列。发现一个表现出糯性表型的光稃稻蜡质突变体在wx基因的编码区含有一个产生终止密码子的替换突变。光稃稻的Wx序列与栽培稻的序列在替换、插入/缺失方面存在差异,其中只有少数替换发生在几个外显子中,没有严重改变Wx蛋白的氨基酸序列。在内含子中观察到的最显著差异是光稃稻(或栽培稻)第10内含子中有一个139 bp的缺失(或插入)。在栽培稻中,139 bp序列中的125 bp两侧是一个14 bp序列的直接重复。在第2外显子之前的区域发现了一个与125 bp序列同源的序列;该序列两侧也是另一个14 bp序列的直接重复。这一结果以及125 bp序列散布在水稻基因组中的观察结果表明,它们是植物系统中的短散在元件(SINEs)。我们还在光稃稻和栽培稻的第13内含子中鉴定出一个具有长末端反向重复的DNA序列。该序列在水稻基因组中以多拷贝形式存在,表明它是一个转座元件。这些结果表明,移动DNA元件通过插入内含子使水稻蜡质基因多样化,每个内含子最初可能长度约为100 bp。