Kaminaka H, Morita S, Nakajima M, Masumura T, Tanaka K
Laboratory of Genetic Engineering, Faculty of Agriculture, Kyoto Prefectural University, Japan.
Plant Cell Physiol. 1998 Dec;39(12):1269-80. doi: 10.1093/oxfordjournals.pcp.a029330.
We have isolated a cDNA (RGRC2) encoding glutathione reductase (GR) from rice (Oryza sativa L.). The comparison of deduced amino acid sequences from RGRC2 and other plant GR cDNAs indicated that RGRC2 encodes a putative cytosolic isoform. The recombinant RGRC2 protein had enzymatic properties comparable to those of GR from rice embryo. Subcellular fractionation showed that the RGRC2 protein is localized primarily in cytosol. mRNA and protein of RGRC2 were observed mainly in roots and calli but little in leaf tissues. Southern blot analysis showed that the RGRC2 gene exists as a single copy gene. Here, we have also isolated a genomic clone completely corresponding to RGRC2. The RGRC2 gene is split into 16 exons spread about 7.4 kb of chromosomal DNA, with coding sequence beginning in the 2nd exon and ending in the 16th exon. From the presence of two ABA-responsive elements in the 5'-flanking region of RGRC2, we examined the expression in rice seedlings treated with ABA and the ABA-related environmental stresses, chilling, drought and salinity. The expression of RGRC2 was strongly induced by all these treatments. We suggest that the expression of the rice cytosolic GR gene is regulated via ABA-mediated signal transduction pathway under environmental stresses.
我们从水稻(Oryza sativa L.)中分离出了一个编码谷胱甘肽还原酶(GR)的cDNA(RGRC2)。对RGRC2推导的氨基酸序列与其他植物GR cDNA的比较表明,RGRC2编码一种假定的胞质异构体。重组RGRC2蛋白具有与水稻胚GR相当的酶学性质。亚细胞分级分离表明,RGRC2蛋白主要定位于胞质溶胶中。RGRC2的mRNA和蛋白主要在根和愈伤组织中观察到,而在叶组织中很少。Southern杂交分析表明,RGRC2基因以单拷贝基因形式存在。在此,我们还分离出了一个与RGRC2完全对应的基因组克隆。RGRC2基因被分成16个外显子,分布在约7.4 kb的染色体DNA上,编码序列从第2个外显子开始,到第16个外显子结束。从RGRC2 5'-侧翼区存在两个ABA反应元件,我们检测了其在经ABA处理以及与ABA相关的环境胁迫(冷害、干旱和盐胁迫)的水稻幼苗中的表达。所有这些处理均强烈诱导了RGRC2的表达。我们认为,在环境胁迫下,水稻胞质GR基因的表达是通过ABA介导的信号转导途径调控的。