Qu L Q, Wei X L, Satoh H, Kumamaru T, Ogawa M, Takaiwa F
Institute of Genetics and Developmental Biology, the Chinese Academy of Sciences, Beijing 100101, China.
Theor Appl Genet. 2003 Jun;107(1):20-5. doi: 10.1007/s00122-003-1228-x. Epub 2003 Mar 21.
The rice ( Oryza sativa L.) mutant of glu4a, lacking the glutelin alpha-2 subunit while the alpha-1 subunit increased (alpha-1H/alpha-2L), was used in this study. Two-dimensional electrophoresis analysis revealed that the mutant lacked the polypeptide pI6.71/alpha-2 encoded by glu4 while forming a new polypeptide of pI6.50/alpha-1. Experiments were conducted to identify the relationships between the mutated polypeptides of the mutant and to illustrate the mutation mechanism of the allele. Peptide mapping and amino-acid sequence analyses revealed that the newly formed glu4a encoded polypeptide pI6.50/alpha-1 of high homology with the deleted pI6.71/alpha-2 polypeptide which was encoded by glu4 (GluA-1). The nucleotide sequence revealed that the iso-electric point variation of the pI6.50/alpha-1 polypeptide was caused by a point mutation with nucleotide replacement at the variable region of the gene. These results suggested the possibility of altering glutelin quality by using single gene mutation.
本研究使用了水稻(Oryza sativa L.)glu4a突变体,该突变体缺乏谷蛋白α-2亚基,而α-1亚基增加(α-1H/α-2L)。二维电泳分析表明,该突变体缺乏由glu4编码的pI6.71/α-2多肽,同时形成了一种新的pI6.50/α-1多肽。进行实验以确定该突变体突变多肽之间的关系,并阐明等位基因的突变机制。肽图分析和氨基酸序列分析表明,新形成的由glu4a编码的pI6.50/α-1多肽与由glu4(GluA-1)编码的缺失的pI6.71/α-2多肽具有高度同源性。核苷酸序列表明,pI6.50/α-1多肽的等电点变化是由基因可变区的核苷酸替换点突变引起的。这些结果表明通过单基因突变改变谷蛋白品质的可能性。