Hirano H Y, Eiguchi M, Sano Y
National Institute of Genetics, Mishima, Japan.
Mol Biol Evol. 1998 Aug;15(8):978-87. doi: 10.1093/oxfordjournals.molbev.a026013.
The rice waxy (wx) locus has two functional alleles, Wxa and Wxb, which are defined by a large difference in the amount of the gene product, called Wx protein, that accumulates in mature seeds. To elucidate the molecular mechanism underlying this difference and to identify the base change causing the alteration of the regulation of the Wx gene during rice evolution, we determined the nucleotide sequences of the regulatory region of Wx alleles and analyzed their function in a transient assay system using rice protoplasts. All Wxa alleles from Oryza sativa Indica, O. rufipogon, and O. glaberrima have a normal sequence of GT at the 5' splice junction of the first intron, representing a high expression level of the Wx transcripts in the endosperm and a high beta-glucuronidase (GUS) activity in protoplasts. On the other hand, Wxb alleles from two strains of O. sativa Japonica have TT at the 5' splice junction, representing a low expression level of the mature transcripts and a low GUS activity. Northern blot analysis also indicated that a larger transcript, consisting of the unspliced first intron, is closely correlated with the function of the Wxb allele. These results suggest that a single base change at the 5' splice junction causes inefficient splicing and, as a result, reduces the level of mature transcript and the GUS activity in the Wxb allele. The Wxb allele in O. saativa Japonica may have been differentiated from the Wxa allele of O. rufipogon, its wild progenitor, by this mutation, and, therefore, a single base change that has altered the regulation of the Wx gene at the posttranscriptional level probably occurred during the domestication of rice.
水稻蜡质(wx)基因座有两个功能等位基因,Wxa和Wxb,它们由成熟种子中积累的基因产物(称为Wx蛋白)的量的巨大差异所定义。为了阐明这种差异背后的分子机制,并确定导致水稻进化过程中Wx基因调控改变的碱基变化,我们测定了Wx等位基因调控区的核苷酸序列,并在使用水稻原生质体的瞬时分析系统中分析了它们的功能。来自籼稻、野生稻和光稃稻的所有Wxa等位基因在第一个内含子的5'剪接位点具有正常的GT序列,这代表胚乳中Wx转录本的高表达水平以及原生质体中的高β-葡萄糖醛酸酶(GUS)活性。另一方面,来自两个粳稻品种的Wxb等位基因在5'剪接位点为TT,这代表成熟转录本的低表达水平和低GUS活性。Northern印迹分析还表明,由未剪接的第一个内含子组成的较大转录本与Wxb等位基因的功能密切相关。这些结果表明,5'剪接位点的单个碱基变化导致剪接效率低下,结果降低了Wxb等位基因中成熟转录本的水平和GUS活性。粳稻中的Wxb等位基因可能通过这种突变与其野生祖先野生稻的Wxa等位基因分化而来,因此,在水稻驯化过程中可能发生了一个改变Wx基因转录后调控的单个碱基变化。