拟南芥
警卫室
转基因
耐旱性
转基因作物
蒸腾作用
生物
转化(遗传学)
干旱胁迫
光合作用
发起人
细胞生物学
基因
植物
基因表达
遗传学
突变体
作者
Wenli Quan,Yuanlei Hu,Zixin Mu,Haitao Shi,Zhulong Chan
标识
DOI:10.1016/j.plaphy.2018.05.033
摘要
PYR/PYLs function as ABA receptors and are key regulators during plant drought stress response. Previously we screened drought tolerance of Arabidopsis ABA receptors PYR/PYLs under the control of five different promoters. In this study, we characterized drought stress tolerance of AtPYL5 transgene under the control of one guard cell specific promoter, pGC1. pGC1::AtPYL5 transgenic Arabidopsis exhibited reduced transpiration rate and decreased water loss after drought treatment. Transformation of pGC1::AtPYL5 in Arabidopsis also decreased oxidative stress damage and improved photosynthesis under drought stress condition. These results indicated that pGC1::AtPYL5 construct is effective and might pave new way to develop genetically engineered plants to improve drought stress tolerance.
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