Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou 730000, China.
Department of Biology, Institute of Plant and Food Sciences, Southern University of Science and Technology, Shenzhen 518055, China.
Plant Cell. 2022 May 24;34(6):2266-2285. doi: 10.1093/plcell/koac092.
B-box containing proteins (BBXs) integrate light and various hormonal signals to regulate plant growth and development. Here, we demonstrate that the photomorphogenic repressors BBX28 and BBX29 positively regulate brassinosteroid (BR) signaling in Arabidopsis thaliana seedlings. Treatment with the BR brassinolide stabilized BBX28 and BBX29, which partially depended on BR INSENSITIVE1 (BRI1) and BIN2. bbx28 bbx29 seedlings exhibited larger cotyledon aperture than the wild-type when treated with brassinazole in the dark, which partially suppressed the closed cotyledons of brassinazole resistant 1-1D (bzr1-1D). Consistently, overexpressing BBX28 and BBX29 partially rescued the short hypocotyls of bri1-5 and bin2-1 in both the dark and light, while the loss-of-function of BBX28 and BBX29 partially suppressed the long hypocotyls of bzr1-1D in the light. BBX28 and BBX29 physically interacted with BR-ENHANCED EXPRESSION1 (BEE1), BEE2, and BEE3 and enhanced their binding to and activation of their target genes. Moreover, BBX28 and BBX29 as well as BEE1, BEE2, and BEE3 increased BZR1 accumulation to promote the BR signaling pathway. Therefore, both BBX28 and BBX29 interact with BEE1, BEE2, and BEE3 to orchestrate light and BR signaling by facilitating the transcriptional activity of BEE target genes. Our study provides insights into the pivotal roles of BBX28 and BBX29 as signal integrators in ensuring normal seedling development.
B -box 蛋白(BBXs)整合光和各种激素信号,以调节植物的生长和发育。在这里,我们证明光形态建成抑制子 BBX28 和 BBX29 正向调控拟南芥幼苗中的油菜素内酯(BR)信号。BR 油菜素内酯处理稳定了 BBX28 和 BBX29,这部分依赖于 BR 不敏感 1(BRI1)和 BIN2。bbx28 bbx29 幼苗在黑暗中用油菜素唑处理时,子叶开度比野生型大,而油菜素唑抗性 1-1D(bzr1-1D)的闭子叶部分受到抑制。一致地,过表达 BBX28 和 BBX29 部分挽救了 bri1-5 和 bin2-1 在黑暗和光照下的短下胚轴,而 BBX28 和 BBX29 的功能丧失部分抑制了 bzr1-1D 在光照下的长下胚轴。BBX28 和 BBX29 与油菜素增强表达 1(BEE1)、BEE2 和 BEE3 物理相互作用,并增强它们与靶基因的结合和激活。此外,BBX28 和 BBX29 以及 BEE1、BEE2 和 BEE3 增加了 BZR1 的积累,以促进 BR 信号通路。因此,BBX28 和 BBX29 与 BEE1、BEE2 和 BEE3 相互作用,通过促进 BEE 靶基因的转录活性来协调光和 BR 信号。我们的研究为 BBX28 和 BBX29 作为信号整合因子在确保正常幼苗发育中的关键作用提供了见解。