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Functional Analysis of the Pepper Ethylene-Responsive Transcription Factor CaAIEF1 in Enhanced ABA Sensitivity and Drought Tolerance

机译:辣椒乙烯响应转录因子CaAIEF1在增强ABA敏感性和耐旱性中的功能分析

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摘要

Abscisic acid (ABA) is a plant hormone that plays a critical role in the response to environmental stress conditions, especially regulation of the stomatal aperture under water-deficit conditions. The signal transduction occurring during the stress response is initiated by transcription of defense-related genes. Here, we isolated the pepper ethylene-responsive transcription factor CaAIEF1 (Capsicum annuum ABA Induced ERF 1). The CaAIEF1 gene was significantly induced after exposure to ABA, drought, and high salinity. Fusion of the acidic domain in the C-terminal region of CaAIEF1 to the GAL4 DNA-binding domain had a transactivation effect on the reporter gene in yeast. Further, the CaAIEF1-GFP fusion constructs localized in the nucleus. We used CaAIEF1-silenced plants and CaAIEF1-overexpressing (OX) plants to elucidate the biological function of CaAIEF1 in response to ABA and drought stress. CaAIEF1-silenced pepper plants and CaAIEF1-OX Arabidopsis plants displayed drought-sensitive and -tolerant phenotypes, respectively, which were characterized by regulation of transpirational water loss and stomatal aperture. In drought stress condition, quantitative RT-PCR analyses revealed that the expression levels of pepper stress-related genes were higher in CaAIEF1-silenced pepper plants than control plants. Moreover, expression levels of Arabidopsis stress-related genes were significantly reduced in CaAIEF1-OX plants compared with control plants in drought stress condition. Our findings suggest that CaAIEF1 positively regulates the drought stress response and the ABA signaling.
机译:脱落酸(ABA)是一种植物激素,在对环境胁迫条件的响应中起着关键作用,尤其是在缺水条件下对气孔孔径​​的调节。在应激反应期间发生的信号转导是由防御相关基因的转录引发的。在这里,我们分离了辣椒乙烯响应转录因子CaAIEF1(辣椒ABA诱导的ERF 1)。暴露于ABA,干旱和高盐度后,CaAIEF1基因被显着诱导。 CaAIEF1的C末端区域的酸性域与GAL4 DNA结合域的融合对酵母中的报告基因具有反式激活作用。此外,CaAIEF1-GFP融合构建体位于细胞核中。我们使用了CaAIEF1沉默的植物和CaAIEF1过表达的植物来阐明CaAIEF1对ABA和干旱胁迫的生物学功能。 CaAIEF1沉默的辣椒植物和CaAIEF1-OX拟南芥植物分别表现出对干旱敏感和耐受的表型,其特征在于蒸腾失水和气孔孔径的调节。在干旱胁迫条件下,定量RT-PCR分析表明,CaAIEF1沉默的辣椒植物中辣椒胁迫相关基因的表达水平高于对照植物。此外,与干旱胁迫条件下的对照植物相比,CaAIEF1-OX植物中拟南芥胁迫相关基因的表达水平显着降低。我们的发现表明CaAIEF1积极调节干旱胁迫反应和ABA信号传导。

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