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首页> 外文期刊>Plant molecular biology reporter >A Buckwheat (Fagopyrum esculentum) DRE-Binding Transcription Factor Gene, FeDREB1, Enhances Freezing and Drought Tolerance of Transgenic Arabidopsis
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A Buckwheat (Fagopyrum esculentum) DRE-Binding Transcription Factor Gene, FeDREB1, Enhances Freezing and Drought Tolerance of Transgenic Arabidopsis

机译:荞麦(Fagopyrum esculentum)DRE结合转录因子基因FeDREB1增强了转基因拟南芥的抗冻性和抗旱性

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CBF/DREB transcription factors play essential roles in plant stress signaling transduction pathway. We isolated and identified a CBF/DREB homologous gene, FeDREB1, from Fagopyrum esculentum. Protein sequence alignment and phylogenetic analyses revealed that the FeDREB1 was grouped into the DREB (A-1) lineage. Moreover, subcellular localization observations suggested that FeDREB1 localizes in the nucleus. Yeast one-hybrid assays showed that FeDREB1 protein specifically binds to the DRE sequence and could activate the expression of reporter genes in yeast. These results further suggested that the FeRDEB1 protein was a CBF/DREB transcription factor. Expression analysis revealed that the transcript levels of the FeRDEB1 gene increased rapidly following low-/high-temperature treatment, drought stress, and exogenous ABA treatment. Over-expression of the FeDREB1 gene significantly enhanced the drought and freezing tolerance of transgenic Arabidopsis but resulted in its growth retardation. Moreover, the transgenic Arabidopsis lines were also highly sensitive to ABA application. Digital gene expression profiling (DGE) analysis indicated that increased transcript levels of many ABA-independent/-dependent stress-responsive genes in 35S::FeRDEB1 transgenic Arabidopsis, revealing that the FeDREB1 may participate in an ABA-dependent/-independent pathways.
机译:CBF / DREB转录因子在植物胁迫信号转导途径中起着至关重要的作用。我们从Fagopyrum esculentum中分离并鉴定了CBF / DREB同源基因FeDREB1。蛋白质序列比对和系统发育分析表明,FeDREB1分为DREB(A-1)谱系。此外,亚细胞定位观察表明,FeDREB1定位在细胞核中。酵母一杂交试验表明,FeDREB1蛋白与DRE序列特异性结合,可以激活酵母中报道基因的表达。这些结果进一步表明FeRDEB1蛋白是CBF / DREB转录因子。表达分析表明,在低温/高温处理,干旱胁迫和外源ABA处理后,FeRDEB1基因的转录水平迅速增加。 FeDREB1基因的过表达显着增强了转基因拟南芥的干旱和冰冻耐受性,但导致其生长迟缓。此外,转基因拟南芥品系对ABA的施用也高度敏感。数字基因表达谱分析(DGE)分析表明35S :: FeRDEB1转基因拟南芥中许多ABA依赖/依赖的胁迫响应基因的转录水平增加,表明FeDREB1可能参与ABA依赖/独立的途径。

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