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Improvement of wheat drought and salt tolerance by expression of a stress- inducible transcription factorGmDREB of soybean (Glycinemax)

查看全文 作  者:GAO [1]Shiqing;XU [1]Huijun;CHENG [2]Xianguo;CHEN [1]Ming;XU [1]Zhaoshi;LI [1]Liancheng;YE [1]Xingguo;DU [1]Lipu;HAO [1]Xiaoyan;MA [1]Youzhi 高影响力作者 机构地区:[1]Key Laboratory of Crop Genetics and Breeding, Ministry of Agriculture/Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing 100081, China;[2]Ministry of Agriculture Key Laboratory of Plant Nutrition and Nutrient Cycling, Institute of Agricultaral Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China高影响力机构 出  处:《Chinese Science Bulletin》索引2005年第50卷第23期,共10页高影响力期刊 基  金:This work was supported by the National 863 Project(Grant No.2002AA224081);National Special Project for Plant Transgenic and Industry(Grant No.JY03-A-18). 摘  要:Under stress conditions such as droughthigh-salinity and low-temperature, the transcription factorof DREB (dehydration responsive element binding proteins)improved efficiently stress resistance by regulating the ex-pression of its downstream genes with various environmentastress resistance in plants. GmDREB gene (GenBank Acces-sion No. AF514908) encoding a stress-inducible transcriptionfactor was cloned by screening a cDNA library of Glycinemax cv. Jinong 27 with yeast one-hybrid method. GmDREBgene was 910 bp in length and encoded 174 amino acids con-taining a conserved AP2/EREBP DNA-binding domain of 58amino acids. Two conserved functional amino acids, valineand glutamic acid, were located on the 14th and the 19thamino acid residues in the conserved structural domain. Analkaline amino acid region (KKR) related to a nuclear local-ization signal was at the N-terminal, while an acidic aminoacid region (DDD) related to trans-activation was at theC-terminal. Plant expression vectors were constructed andtransformed into wheat by bombardment. In total, 13 trans-genic plants with Ubi::GmDREB and 11 transgenic plantswith rd29A::GmDREB were identified from 103 regenerationplants by molecular analysis. The drought and salt tolerancesof T1 transgenic lines with Ubi::GmDREB orrd29A::GmDREB were demonstrated to be improved ascompared to wild type. The result also suggested that bothUbiquitin and rd29A promoters could effectively drive theexpression of the GmDREB gene and enhance drought andsalt tolerance of T1 plants. 关 键 词:小麦 GmDREB基因 抗旱性 耐盐性 应力诱发转录因子 大豆甘氨酸
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