Meng Lin, Yang Haipo, Yang Jinli, Wang Yaping, Ye Tiantian, Xiang Lin, Chan Zhulong, Wang Yanping
National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Huazhong Agricultural University, Wuhan 430070, PR China.
Hubei Hongshan Laboratory, Wuhan 30070, PR China.
J Exp Bot. 2024 Apr 15;75(8):2435-2450. doi: 10.1093/jxb/erae021.
WRKY transcription factors play a central role in controlling plant organ senescence; however, it is unclear whether and how they regulate petal senescence in the widely grown ornamental plant tulip (Tulipa gesneriana). In this study, we report that TgWRKY75 promotes petal senescence by enhancing the synthesis of both abscisic acid (ABA) and salicylic acid (SA) in tulip and in transgenic Arabidopsis. The expression level of TgWRKY75 was up-regulated in senescent petals, and exogenous ABA or SA treatment induced its expression. The endogenous contents of ABA and SA significantly increased during petal senescence and in response to TgWRKY75 overexpression. Two SA synthesis-related genes, TgICS1 and TgPAL1, were identified as direct targets of TgWRKY75, which binds to their promoters. In parallel, TgWRKY75 activated the expression of the ABA biosynthesis-related gene TgNCED3 via directly binding to its promoter region. Site mutation of the W-box core motif located in the promoters of TgICS1, TgPAL1, and TgNCED3 eliminated their interactions with TgWRKY75. In summary, our study demonstrates a dual regulation of ABA and SA biosynthesis by TgWRKY75, revealing a synergistic process of tulip petal senescence through feedback regulation between TgWRKY75 and the accumulation of ABA and SA.
WRKY转录因子在控制植物器官衰老过程中起着核心作用;然而,它们是否以及如何调节广泛种植的观赏植物郁金香(Tulipa gesneriana)的花瓣衰老尚不清楚。在本研究中,我们报道TgWRKY75通过增强郁金香和转基因拟南芥中脱落酸(ABA)和水杨酸(SA)的合成来促进花瓣衰老。TgWRKY75的表达水平在衰老花瓣中上调,外源ABA或SA处理可诱导其表达。在花瓣衰老期间以及响应TgWRKY75过表达时,ABA和SA的内源含量显著增加。两个SA合成相关基因TgICS1和TgPAL1被鉴定为TgWRKY75的直接靶标,TgWRKY75与它们的启动子结合。同时,TgWRKY75通过直接结合其启动子区域激活ABA生物合成相关基因TgNCED3的表达。位于TgICS1、TgPAL1和TgNCED3启动子中的W-box核心基序的位点突变消除了它们与TgWRKY75的相互作用。总之,我们的研究证明了TgWRKY75对ABA和SA生物合成的双重调节,揭示了通过TgWRKY75与ABA和SA积累之间的反馈调节实现郁金香花瓣衰老的协同过程。