Qin Feng, Sakuma Yoh, Li Jie, Liu Qiang, Li Yi-Qin, Shinozaki Kazuo, Yamaguchi-Shinozaki Kazuko
Department of Biological Sciences and Biotechnology, Tsinghua University, 100084 Beijing, China.
Plant Cell Physiol. 2004 Aug;45(8):1042-52. doi: 10.1093/pcp/pch118.
The transcription factors DREB1s/CBFs specifically interact with the DRE/CRT cis-acting element (core motif: G/ACCGAC) and control the expression of many stress-inducible genes in Arabidopsis. We isolated a cDNA for a DREB1/CBF homolog, ZmDREB1A in maize using a yeast one-hybrid system. The ZmDREB1A proteins specifically bound to DRE and the highly conserved valine at the 14th residue in the ERF/AP2 DNA binding domain was a key to determining the specific interaction between this protein and the DRE sequence. Expression of ZmDREB1A was induced by cold stress and slightly increased by high-salinity stress. This gene was also transiently expressed by mechanical attack. ZmDREB1A activated the transcription of the GUS reporter gene driven by DRE in rice protoplasts. Overexpression of ZmDREB1A in transgenic Arabidopsis induced overexpression of target stress-inducible genes of Arabidopsis DREB1A resulting in plants with higher tolerance to drought and freezing stresses. This indicated that ZmDREB1A has functional similarity to DREB1s/CBFs in Arabidopsis. The structure of the ERF/AP2 domain of ZmDREB1A in maize is closely related to DREB1-type ERF/AP2 domains in the monocots as compared with that in the dicots. ZmDREB1A is suggested to be potentially useful for producing transgenic plants that is tolerant to drought, high-salinity and/or cold stresses.
转录因子DREB1s/CBFs特异性地与DRE/CRT顺式作用元件(核心基序:G/ACCGAC)相互作用,并控制拟南芥中许多胁迫诱导基因的表达。我们使用酵母单杂交系统从玉米中分离出一个DREB1/CBF同源物ZmDREB1A的cDNA。ZmDREB1A蛋白特异性结合DRE,并且ERF/AP2 DNA结合结构域中第14位残基处高度保守的缬氨酸是决定该蛋白与DRE序列之间特异性相互作用的关键。ZmDREB1A的表达受冷胁迫诱导,高盐胁迫使其略有增加。该基因也可由机械损伤瞬时表达。ZmDREB1A在水稻原生质体中激活了由DRE驱动的GUS报告基因的转录。在转基因拟南芥中过表达ZmDREB1A可诱导拟南芥DREB1A的靶胁迫诱导基因过表达,从而使植株对干旱和冷冻胁迫具有更高的耐受性。这表明ZmDREB1A与拟南芥中的DREB1s/CBFs具有功能相似性。与双子叶植物相比,玉米中ZmDREB1A的ERF/AP2结构域的结构与单子叶植物中DREB1型ERF/AP2结构域密切相关。ZmDREB1A被认为对于培育耐旱、耐高盐和/或耐冷胁迫的转基因植物具有潜在用途。