Zhao Jiachen, Yang Guangqiong, Jiang Lu, Zhang Shilong, Miao Langxi, Xu Peng, Chen Huiru, Chen Li, Mao Zhilei, Guo Tongtong, Kou Shuang, Yang Hong-Quan, Wang Wenxiu
Shanghai Key Laboratory of Plant Molecular Sciences, College of Life Sciences, Shanghai Normal University, Shanghai, China.
School of Life Sciences, Fudan University, Shanghai, China.
Front Plant Sci. 2022 Mar 30;13:865019. doi: 10.3389/fpls.2022.865019. eCollection 2022.
Phytochromes A and B (phyA and phyB) are the far-red and red lights photoreceptors mediating many light responses in . Brassinosteroid (BR) is a pivotal phytohormone regulating a variety of plant developmental processes including photomorphogenesis. It is known that phyB interacts with BES1 to inhibit its DNA-binding activity and repress BR signaling. Here, we show that far-red and red lights modulate BR signaling through phyA and phyB regulation of the stability of BIN2, a glycogen synthase kinase 3 (GSK3)-like kinase that phosphorylates BES1/BZR1 to inhibit BR signaling. The gain-of-function mutant displays an enhanced photomorphogenic phenotype in both far-red and red lights. phyA-enhanced accumulation of BIN2 promotes the phosphorylation of BES1 in far-red light. acts genetically downstream from to regulate photomorphogenesis under far-red light. Both phyA and phyB interact directly with BIN2, which may promote the interaction of BIN2 with BES1 and induce the phosphorylation of BES1. Our results suggest that far-red and red lights inhibit BR signaling through phyA and phyB stabilization of BIN2 and promotion of BES1 phosphorylation, which defines a new layer of the regulatory mechanism that allows plants to coordinate light and BR signaling pathways to optimize photomorphogenesis.
光敏色素A和B(phyA和phyB)是介导植物中许多光反应的远红光和红光光感受器。油菜素内酯(BR)是一种关键的植物激素,调控包括光形态建成在内的多种植物发育过程。已知phyB与BES1相互作用以抑制其DNA结合活性并抑制BR信号传导。在此,我们表明远红光和红光通过phyA和phyB对BIN2稳定性的调节来调控BR信号传导,BIN2是一种糖原合酶激酶3(GSK3)样激酶,它使BES1/BZR1磷酸化以抑制BR信号传导。功能获得型突变体在远红光和红光下均表现出增强的光形态建成表型。phyA增强的BIN2积累促进了远红光下BES1的磷酸化。在远红光下, 在 的下游发挥遗传作用以调控光形态建成。phyA和phyB均直接与BIN2相互作用,这可能促进BIN2与BES1的相互作用并诱导BES1的磷酸化。我们的结果表明,远红光和红光通过phyA和phyB稳定BIN2并促进BES1磷酸化来抑制BR信号传导,这定义了一种新的调控机制,使植物能够协调光和BR信号通路以优化光形态建成。