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首页> 外文期刊>Chinese science bulletin >Improvement of wheat drought and salt tolerance by expression of a stress-inducible transcription factor GmDREB of soybean (Glycine max)
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Improvement of wheat drought and salt tolerance by expression of a stress-inducible transcription factor GmDREB of soybean (Glycine max)

机译:通过表达大豆胁迫诱导转录因子GmDREB来改善小麦的干旱和耐盐性

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Under stress conditions such as drought, high-salinity and low-temperature, the transcription factor of DREB (dehydration responsive element binding proteins) improved efficiently stress resistance by regulating the expression of its downstream genes with various environmental stress resistance in plants. GmDREB gene (GenBank Accession No. AF514908) encoding a stress-inducible transcription factor was cloned by screening a cDNA library of Glycine max cv, Jinong 27 with yeast one-hybrid method. GmDREB gene was 910 bp in length and encoded 174 amino acids containing a conserved AP2/EREBP DNA-binding domain of 58 amino acids. Two conserved functional amino acids, valine and glutamic acid, were located on the 14th and the 19th amino acid residues in the conserved structural domain. An alkaline amino acid region (KKR) related to a nuclear localization signal was at the N-terminal, while an acidic amino acid region (DDD) related to trams-activation was at the C-terminal. Plant expression vectors were constructed and transformed into wheat by bombardment. In total, 13 transgenic plants with Vbir::GmDREB and 11 transgenic plants with rd29A::GmDREB were identified from 103 regeneration plants by molecular analysis. The drought and salt tolerances of T_1 transgenic lines with Ubi::GmDREB or rd29A::GmDREB were demonstrated to be improved as compared to wild type. The result also suggested that both Ubiquitin and rd29A promoters could effectively drive the expression of the GmDREB gene and enhance drought and salt tolerance of T_1 plants.
机译:在干旱,高盐度和低温等胁迫条件下,DREB(脱水反应元件结合蛋白)的转录因子通过调节下游基因在植物中的各种抗逆性表达而有效提高了抗逆性。通过用酵母一杂交法筛选甘氨酸最大cv,济农27的cDNA文库,克隆了编码胁迫诱导型转录因子的GmDREB基因(GenBank登录号AF514908)。 GmDREB基因的长度为910 bp,编码174个氨基酸,其中包含58个氨基酸的保守AP2 / EREBP DNA结合结构域。两个保守的功能性氨基酸,缬氨酸和谷氨酸,位于保守结构域的第14和19个氨基酸残基上。与核定位信号相关的碱性氨基酸区域(KKR)在N端,而与电车激活相关的酸性氨基酸区域(DDD)在C端。构建植物表达载体,并通过轰击将其转化为小麦。通过分子分析,共从103个再生植物中鉴定出13种具有Vbir :: GmDREB的转基因植物和11种具有rd29A :: GmDREB的转基因植物。与野生型相比,已证明使用Ubi :: GmDREB或rd29A :: GmDREB的T_1转基因品系的干旱和盐耐性得到改善。该结果还表明泛素启动子和rd29A启动子均可有效驱动GmDREB基因的表达并增强T_1植物的干旱和耐盐性。

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