Huang Fuli, Sun Mimi, Yao Zhijin, Zhou Jing, Bai Qian, Chen Xuexue, Huang Yun, Shen Yuanyue
College of Plant Science and Technology, Beijing University of Agriculture, No.7 Beinong Road, Changping District, Beijing 102206, P. R. China.
Ministry of Education Key Laboratory of Silviculture and Conservation, College of Forestry, Beijing Forestry University, 35 East Qinghua Road, Beijing 100083, P. R. China.
J Exp Bot. 2024 Sep 27;75(18):5627-5640. doi: 10.1093/jxb/erae250.
Strawberry (Fragaria × ananassa) is a model plant for studying non-climacteric fruit ripening regulated by abscisic acid (ABA); however, the signaling of ABA in the regulation of fruit coloration is not fully understood. In this study, we identified the transcription factor BASIC HELIX-LOOP-HELIX 3 (bHLH3) as being key to fruit coloration via yeast two-hybrid library screening using the bait SUCROSE NONFERMENTING 1 (SNF1)-RELATED PROTEIN KINASE 2 (SnRK2.6), which is a core ABA signaling component that negatively regulates ripening. The interaction was also confirmed by firefly luciferase complementation assays and pull-down assays. RT-qPCR and western blot analysis confirmed that bHLH3 is expressed ubiquitously in strawberry tissues, and it is expressed stably during fruit development. Overexpression and RNAi of both bHLH3 and SnRK2.6 demonstrated that bHLH3 and SnRK2.6 promote and inhibit strawberry fruit coloration, respectively. Using EMSAs, we showed that bHLH3 promotes the expression of UDP-GLUCOSE: FLAVONOL-O-GLUCOSYLTRANSFERASE (UFGT), a key gene for anthocyanin biosynthesis, by directly binding to its promoter. We determined that SnRK2.6 can phosphorylate bHLH3 and that this inhibits its binding to the UFGT promoter, consequently suppressing expression. Altogether, we propose that increased ABA content during strawberry fruit ripening leads to decreased expression of SnRK2.6, which in turn releases the phosphorylation of bHLH3 and thereby enhances UFGT expression, ultimately promoting the coloration of the fruit.
草莓(Fragaria × ananassa)是研究脱落酸(ABA)调控的非跃变型果实成熟的模式植物;然而,ABA在果实着色调控中的信号传导尚未完全明确。在本研究中,我们通过酵母双杂交文库筛选,以蔗糖非发酵1(SNF1)相关蛋白激酶2(SnRK2.6)为诱饵,鉴定出转录因子基本螺旋-环-螺旋3(bHLH3)是果实着色的关键因子,SnRK2.6是ABA信号传导的核心组分,对果实成熟起负调控作用。荧光素酶互补实验和下拉实验也证实了二者的相互作用。RT-qPCR和蛋白质免疫印迹分析证实,bHLH3在草莓组织中普遍表达,且在果实发育过程中稳定表达。bHLH3和SnRK2.6的过表达及RNA干扰实验表明,bHLH3和SnRK2.6分别促进和抑制草莓果实着色。通过电泳迁移率变动分析(EMSA),我们发现bHLH3通过直接结合花青素生物合成关键基因UDP-葡萄糖:黄酮醇-O-葡萄糖基转移酶(UFGT)的启动子来促进其表达。我们还确定SnRK2.6可以磷酸化bHLH3,从而抑制其与UFGT启动子的结合,进而抑制其表达。总之,我们认为草莓果实成熟过程中ABA含量的增加导致SnRK2.6表达降低,进而解除对bHLH3的磷酸化,增强UFGT的表达,最终促进果实着色。