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首页> 外文期刊>Frontiers in Plant Science >A Dominant Negative OsKAT2 Mutant Delays Light-Induced Stomatal Opening and Improves Drought Tolerance without Yield Penalty in Rice
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A Dominant Negative OsKAT2 Mutant Delays Light-Induced Stomatal Opening and Improves Drought Tolerance without Yield Penalty in Rice

机译:主导的负OSKAT2突变体延迟光引起的气孔开口,并改善稻米含量损失的耐旱性耐受性

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摘要

Stomata are the main gateways for water and air transport between leaves and the environment. Inward-rectifying potassium channels regulate photo-induced stomatal opening. Rice contains three inward rectifying shaker-like potassium channel proteins, OsKAT1, OsKAT2, and OsKAT3. Among these, only OsKAT2 is specifically expressed in guard cells. Here, we investigated the functions of OsKAT2 in stomatal regulation using three dominant negative mutant proteins, OsKAT2(T235R), OsKAT2(T285A) and OsKAT2(T285D), which are altered in amino acids in the channel pore and at a phosphorylation site. Yeast complementation and patch clamp assays showed that all three mutant proteins lost channel activity. However, among plants overexpressing these mutant proteins, only plants overexpressing OsKAT2(T235R) showed significantly less water loss than the control. Moreover, overexpression of this mutant protein led to delayed photo-induced stomatal opening and increased drought tolerance. Our results indicate that OsKAT2 is an inward- rectifying shaker-like potassium channel that mainly functions in stomatal opening. Interestingly, overexpression of OsKAT2(T235R) did not cause serious defects in growth or yield in rice, suggesting that OsKAT2 is a potential target for engineering plants with improved drought tolerance without yield penalty.
机译:气孔是叶子和环境之间的水和空气运输的主要网关。向内整流钾通道调节光诱导的气孔开口。大米含有三个向内整流振荡器样钾通道蛋白质,oskat1,oskat2和oskat3。其中,仅在保护细胞中仅表达OSKAT2。在这里,我们研究了使用三种显性负突变蛋白,OSKAT2(T235R),OSKAT2(T285A)和OSKAT2(T285D)在气孔调节中的功能,其在通道孔和磷酸化位点在氨基酸中改变。酵母互补和蛋白夹钳测定表明,所有三种突变蛋白损失了通道活性。然而,在过表达这些突变蛋白的植物中,只有过表达OSKAT2(T235R)的植物显着较低的水损失而不是对照。此外,这种突变蛋白的过表达导致延迟的光诱导的气孔开口和增加的耐旱性。我们的结果表明,OSKAT2是一种内侧矫正振荡器的钾通道,主要是气孔开口的功能。有趣的是,OSKAT2(T235R)的过度表达没有引起大米生长或产量的严重缺陷,表明OSKAT2是工程植物的潜在目标,其具有改善的干旱耐受性而没有收取罚球。

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