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Overexpressing a NAM, ATAF, and CUC (NAC) transcription factor enhances drought resistance and salt tolerance in rice

机译:过量表达NAM,ATAF和CUC(NAC)转录因子可增强水稻的抗旱性和耐盐性

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摘要

Drought and salinity are major abiotic stresses to crop production. Here, we show that overexpression of stress responsive gene SNAC1 (STRESS-RESPONSIVE NAC 1) significantly enhances drought resistance in transgenic rice (22–34% higher seed setting than control) in the field under severe drought stress conditions at the reproductive stage while showing no phenotypic changes or yield penalty. The transgenic rice also shows significantly improved drought resistance and salt tolerance at the vegetative stage. Compared with WT, the transgenic rice are more sensitive to abscisic acid and lose water more slowly by closing more stomatal pores, yet display no significant difference in the rate of photosynthesis. SNAC1 is induced predominantly in guard cells by drought and encodes a NAM, ATAF, and CUC (NAC) transcription factor with transactivation activity. DNA chip analysis revealed that a large number of stress-related genes were up-regulated in the SNAC1-overexpressing rice plants. Our data suggest that SNAC1 holds promising utility in improving drought and salinity tolerance in rice.
机译:干旱和盐分是作物生产的主要非生物胁迫。在这里,我们表明,在严重干旱胁迫条件下,在繁殖期,过量表达胁迫响应基因SNAC1(胁迫响应NAC 1)显着增强了转基因水稻的田间抗旱性(种子结实比对照高22-34%),同时显示没有表型变化或产量损失。在营养阶段,转基因水稻还显示出显着改善的抗旱性和耐盐性。与野生型相比,转基因水稻对脱落酸的敏感性更高,并且通过封闭更多的气孔孔而失水的速度更慢,但光合作用速率没有显着差异。 SNAC1主要通过干旱在保卫细胞中诱导,并编码具有反式激活活性的NAM,ATAF和CUC(NAC)转录因子。 DNA芯片分析显示,在过表达SNAC1的水稻植株中大量与胁迫相关的基因被上调。我们的数据表明,SNAC1在改善水稻的干旱和盐分耐受性方面具有广阔的应用前景。

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