State Key Laboratory of Genetic Engineering, Institute of Plants Biology, School of Life Sciences, Fudan University, Shanghai, 200438, China.
New Phytol. 2023 Aug;239(4):1253-1265. doi: 10.1111/nph.18776. Epub 2023 Feb 21.
Light and temperature are two key environmental signals that share several molecular components that, in turn, regulate plant growth. Darkness and high ambient temperatures promote skoto- and thermomorphogenesis, including stem elongation. Heat shock proteins 90 (HSP90s) facilitate the adaptation of organisms to various adverse environmental stimuli. Here, we showed that HSP90s are required for hypocotyl elongation during both skoto- and thermomorphogenesis. When HSP90s activities are impaired by the knockdown of HSP90s expression or the application of HSP90 inhibitors, the expression levels and protein abundance of PHYTOCHROME-INTERACTING FACTOR 4 (PIF4) markedly decreased. EARLY FLOWERING 3 (ELF3) deficiency was resistant to the inhibition of HSP90s activities. Furthermore, HSP90s interacted with and destabilized ELF3. In the CONSTITUTIVE PHOTOMORPHOGENIC 1 (COP1) mutant, the changes in endogenous PIF4 and ELF3 protein levels caused by the inhibition of HSP90s activities were abolished. HSP90s enhanced the interaction between COP1 and ELF3, reduced ELF3 functional effects on PIF4 and modulated hypocotyl elongation during skoto- and thermomorphogenesis. Our results indicated that HSP90s participate in light and temperature signalling via the COP1-ELF3-PIF4 module to regulate hypocotyl growth in changing environments.
光是两种关键的环境信号,它们共享几个分子成分,这些成分反过来又调节植物生长。黑暗和高环境温度促进了向光性和向温性形态发生,包括茎伸长。热休克蛋白 90(HSP90s)有助于生物体适应各种不利的环境刺激。在这里,我们表明 HSP90s 在向光性和向温性形态发生过程中都需要促进下胚轴伸长。当 HSP90s 的活性通过 HSP90s 表达的敲低或 HSP90 抑制剂的应用受损时,PHYTOCHROME-INTERACTING FACTOR 4(PIF4)的表达水平和蛋白丰度显著降低。EARLY FLOWERING 3(ELF3)缺陷对 HSP90s 活性的抑制具有抗性。此外,HSP90s 与 ELF3 相互作用并使其不稳定。在 CONSTITUTIVE PHOTOMORPHOGENIC 1(COP1)突变体中,抑制 HSP90s 活性引起的内源性 PIF4 和 ELF3 蛋白水平的变化被消除。HSP90s 增强了 COP1 和 ELF3 之间的相互作用,降低了 ELF3 对 PIF4 的功能影响,并调节了向光性和向温性形态发生过程中下胚轴的伸长。我们的结果表明,HSP90s 通过 COP1-ELF3-PIF4 模块参与光和温度信号转导,以调节不断变化的环境中的下胚轴生长。