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Oryza sativa H+-ATPase (OSA) is Involved in the Regulation of Dumbbell-Shaped Guard Cells of Rice

机译:水稻H + -ATPase(OSA)参与水稻哑铃形保护细胞的调控

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摘要

The stomatal apparatus consists of a pair of guard cells and regulates gas exchange between the leaf and atmosphere. In guard cells, blue light (BL) activates H+-ATPase in the plasma membrane through the phosphorylation of its penultimate threonine, mediating stomatal opening. Although this regulation is thought to be widely adopted among kidney-shaped guard cells in dicots, the molecular basis underlying that of dumbbell-shaped guard cells in monocots remains unclear. Here, we show that H+-ATPases are involved in the regulation of dumbbell-shaped guard cells. Stomatal opening of rice was promoted by the H+-ATPase activator fusicoccin and by BL, and the latter was suppressed by the H+-ATPase inhibitor vanadate. Using H+-ATPase antibodies, we showed the presence of phosphoregulation of the penultimate threonine in Oryza sativa H+-ATPases (OSAs) and localization of OSAs in the plasma membrane of guard cells. Interestingly, we identified one H+-ATPase isoform, OSA7, that is preferentially expressed among the OSA genes in guard cells, and found that loss of function of OSA7 resulted in partial insensitivity to BL. We conclude that H+-ATPase is involved in BL-induced stomatal opening of dumbbell-shaped guard cells in monocotyledon species.
机译:气孔装置由一对保卫室组成,可调节叶片与大气之间的气体交换。在保卫细胞中,蓝光(BL)通过倒数第二个苏氨酸的磷酸化激活质膜中的H + -ATPase,介导气孔开口。尽管人们认为这种调节在双子叶植物的肾形保卫细胞中被广泛采用,但是尚不清楚单子叶植物中的哑铃形保卫细胞的分子基础。在这里,我们表明H + -ATPases参与了哑铃状守卫细胞的调节。 H + -ATPase激活剂fusicoccin和BL促进了水稻的气孔开放,而BL受H + -ATPase抑制剂钒酸盐抑制。使用H + -ATPase抗体,我们显示了稻中H + -ATPases(OSA)中倒数第二个苏氨酸的磷酸化和OSA在质膜中的定位保护细胞。有趣的是,我们发现了一种H + -ATPase同工型OSA7,它在保卫细胞中的OSA基因中优先表达,并且发现OSA7功能的丧失导致了对BL的部分不敏感性。我们得出的结论是H + -ATPase参与了BL诱导的单子叶植物哑铃形保卫细胞的气孔开放。

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