Department of Plant and Microbial Biology, University of Minnesota at Twin Cities, Saint Paul, MN, 55108, USA.
State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, Shandong, 271018, China.
Plant Cell Environ. 2018 Aug;41(8):1912-1925. doi: 10.1111/pce.13336. Epub 2018 May 27.
Blue light triggers the opening of stomata in the morning to allow CO uptake and water loss through transpiration. During the day, plants may experience periodic drought and accumulate abscisic acid (ABA). ABA antagonizes blue light signalling through phosphatidic acid and reduces stomatal aperture. This study reveals a molecular mechanism by which two light signalling proteins interact to repress ABA signalling in the control of stomatal aperture. A hypersensitive to red and blue 2 (hrb2) mutant has a defective ATP-dependent chromatin-remodelling factor, PKL, in the chromodomain/helicase/DNA binding family. HRB2 enhances the light-induced expression of a B-box transcription factor gene, BBX21. BBX21 binds a T/G box in the ABI5 promoter and recruits HRB2 to modulate the chromatin structure at the ABI5 locus. Mutation in either HRB2 or BBX21 led to reduced water loss and ABA hypersensitivity. This hypersensitivity to ABA was well explained by the enhanced expression of the ABA signalling gene ABI5 in both mutants. Indeed, stomatal aperture was significantly reduced by ABI5 overexpression in the absence or presence of ABA under monochromatic light conditions. Overall, we present a regulatory loop in which two light signalling proteins repress ABA signalling to sustain gas exchange when plants experience periodic drought.
蓝光会在清晨引发气孔开启,从而允许 CO2 吸收和通过蒸腾作用丧失水分。在白天,植物可能会经历周期性干旱,并积累脱落酸(ABA)。ABA 通过磷酸脂酸拮抗蓝光信号,减少气孔开度。本研究揭示了两个光信号蛋白相互作用的分子机制,该机制通过抑制 ABA 信号来控制气孔开度。一个对红光和蓝光超敏感 2(hrb2)突变体在 chromodomain/helicase/DNA binding 家族的 ATP 依赖性染色质重塑因子 PKL 中存在缺陷。HRB2 增强了 B-box 转录因子基因 BBX21 的光诱导表达。BBX21 结合 ABI5 启动子中的 T/G 盒,并招募 HRB2 来调节 ABI5 基因座的染色质结构。HRB2 或 BBX21 的突变导致水分丧失减少和 ABA 超敏反应。ABA 信号基因 ABI5 在两个突变体中的表达增强很好地解释了这种对 ABA 的超敏反应。事实上,在单色光条件下,ABI5 过表达在不存在或存在 ABA 的情况下,气孔开度显著降低。总的来说,我们提出了一个调控回路,其中两个光信号蛋白抑制 ABA 信号,以维持植物经历周期性干旱时的气体交换。