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The Ascorbic Acid Redox State Controls Guard Cell Signaling and Stomatal Movement

机译:抗坏血酸氧化还原状态控制保卫细胞信号和气孔运动

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摘要

H2O2 serves an important stress signaling function and promotes stomatal closure, whereas ascorbic acid (Asc) is the major antioxidant that scavenges H2O2. Dehydroascorbate reductase (DHAR) catalyzes the reduction of dehydroascorbate (oxidized ascorbate) to Asc and thus contributes to the regulation of the Asc redox state. In this study, we observed that the level of H2O2 and the Asc redox state in guard cells and whole leaves are diurnally regulated such that the former increases during the afternoon, whereas the latter decreases. Plants with an increased guard cell Asc redox state were generated by increasing DHAR expression, and these exhibited a reduction in the level of guard cell H2O2. In addition, a higher percentage of open stomata, an increase in total open stomatal area, increased stomatal conductance, and increased transpiration were observed. Guard cells with an increase in Asc redox state were less responsive to H2O2 or abscisic acid signaling, and the plants exhibited greater water loss under drought conditions, whereas suppressing DHAR expression conferred increased drought tolerance. Our analyses suggest that DHAR serves to maintain a basal level of Asc recycling in guard cells that is insufficient to scavenge the high rate of H2O2 produced in the afternoon, thus resulting in stomatal closure.
机译:H2O2具有重要的压力信号传导功能并促进气孔关闭,而抗坏血酸(Asc)是清除H2O2的主要抗氧化剂。脱氢抗坏血酸还原酶(DHAR)催化将脱氢抗坏血酸(氧化的抗坏血酸盐)还原为Asc,因此有助于调节Asc氧化还原状态。在这项研究中,我们观察到保卫细胞和整片叶子中的H2O2水平和Asc氧化还原状态受到昼夜调节,从而前者在下午升高,而后者则降低。通过增加DHAR表达来生成保卫细胞Asc氧化还原状态增强的植物,并且这些植物的保卫细胞H2O2含量降低。此外,观察到较高的开放气孔百分比,总的开放气孔面积增加,气孔导度增加和蒸腾作用增加。具有Asc氧化还原状态的保卫细胞对H2O2或脱落酸信号的响应较弱,并且植物在干旱条件下表现出更大的水分流失,而抑制DHAR表达则赋予了更高的抗旱性。我们的分析表明,DHAR可以维持保卫细胞中Asc循环的基础水平,不足以清除下午产生的高H2O2率,从而导致气孔关闭。

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