Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, 100081, Beijing, China.
Transgenic Res. 2010 Oct;19(5):809-18. doi: 10.1007/s11248-009-9357-x. Epub 2010 Jan 20.
Ethylene response factor (ERF) proteins play important roles in regulating plant stress response and development. Our previous studies have shown that JERF3 activates the expression of oxidative stress responsive genes in transgenic tobacco and enhances tolerance to salt, drought, and freezing, indicating that JERF3 is a very important transcriptional regulator in dicot plants. In the study reported here, we further addressed the regulatory function of JERF3 in a monocot, rice, by generating transgenic rice plants overexpressing JERF3 and comparing these with non-transgenic rice plants for physiological and molecular alterations and tolerance to drought and osmotic stresses. Growth and development under normal growth conditions were the same in both the transgenic and non-transgenic rice. Interestingly, the JERF3 transgenic plants exhibited better stress tolerance, whereas the non-transgenic rice seedlings showed serious stress symptoms and ultimately died after the drought and osmotic treatments. Biochemical analysis revealed that the contents of soluble sugars and proline were significantly increased in transgenic rice compared with non-transgenic plants under dehydration conditions. In addition, overexpression of JERF3 in rice led to the up-regulated expression of two OsP5CS genes in response to drought treatment compared with their expression in non-transgenic plants. JERF3 also activated the expression of stress-responsive genes, including WCOR413-like, OsEnol, and OsSPDS2, in transgenic rice under normal growth conditions. These data suggest that JERF3 plays important roles in transgenic rice and that it is likely to be beneficial in engineering crop plants with improved tolerance to drought and osmotic stresses.
乙烯应答因子(ERF)蛋白在调节植物应激反应和发育方面发挥着重要作用。我们之前的研究表明,JERF3 激活了转基因烟草中氧化应激响应基因的表达,并增强了对盐、干旱和冷冻的耐受性,表明 JERF3 是双子叶植物中非常重要的转录调控因子。在本报告的研究中,我们通过生成过表达 JERF3 的转基因水稻植株,并将这些植株与非转基因水稻植株进行比较,以研究 JERF3 在单子叶植物水稻中的调节功能,从而进一步研究 JERF3 在单子叶植物水稻中的调节功能。在正常生长条件下,转基因和非转基因水稻的生长和发育情况相同。有趣的是,JERF3 转基因植株表现出更好的胁迫耐受性,而非转基因水稻幼苗在干旱和渗透胁迫处理后表现出严重的胁迫症状,最终死亡。生化分析表明,在脱水条件下,与非转基因植株相比,转基因水稻中的可溶性糖和脯氨酸含量显著增加。此外,与非转基因植株相比,JERF3 在水稻中的过表达导致 OsP5CS 基因的表达在干旱处理下上调。JERF3 还激活了应激响应基因的表达,包括 WCOR413-like、OsEnol 和 OsSPDS2,在正常生长条件下的转基因水稻中。这些数据表明,JERF3 在转基因水稻中发挥着重要作用,并且可能有益于工程作物对干旱和渗透胁迫的耐受性。