Kim Soo Youn, Hyoung Sujin, So Won Mi, Shin Jeong Sheop
Division of Life Sciences, Korea University, Seoul, 02841, Republic of Korea.
Plant Mol Biol. 2018 Feb;96(3):315-326. doi: 10.1007/s11103-018-0697-x. Epub 2018 Jan 16.
The trichome-related protein (TRP) is a novel transcription factor (TF) that negatively regulates trichome initiation-related TFs through gibberellin (GA) signaling. Trichomes, which are outgrowths of leaf epidermal cells, provide the plant with a first line of defense against damage from herbivores and reduce transpiration. The initiation and development of trichomes are regulated by a network of positively or negatively regulating transcription factors (TFs). However, little information is currently available on transcriptional regulation related to trichome formation. Here, we report a novel TF Trichome-Related Protein (TRP) that was observed to negatively regulate the trichome initiation-related TFs through gibberellic acid (GA) signaling. ProTRP:GUS revealed that TRP was only expressed in the trichome. The TRP loss-of-function mutant (trp) had an increased number of trichomes on the flower, cauline leaves, and main inflorescence stems compared to the wild-type. In contrast, TRP overexpression lines (TRP-Ox) exhibited a decreased number of trichomes on cauline leaves and main inflorescence stem following treatment with exogenous GA. Moreover, the expressions of trichome initiation regulators (GIS, GIS2, ZFP8, GL1, and GL3) increased in trp plants but decreased in TRP-Ox lines after GA treatment. TRP was observed to physically interact with ZFP5, a C2H2 TF that controls trichome cell development through GA signaling, both in vivo and in vitro. Based on these results, we suggest that TRP functions upstream of the trichome initiation regulators and represses the binding of ZFP5 to the ZFP8 promoter.
毛状体相关蛋白(TRP)是一种新型转录因子(TF),它通过赤霉素(GA)信号通路负调控与毛状体起始相关的转录因子。毛状体是叶表皮细胞的突出物,为植物提供了抵御食草动物伤害的第一道防线,并减少蒸腾作用。毛状体的起始和发育受正向或负向调控转录因子网络的调节。然而,目前关于毛状体形成相关转录调控的信息很少。在此,我们报道了一种新型转录因子毛状体相关蛋白(TRP),它通过赤霉素(GA)信号通路负调控与毛状体起始相关的转录因子。ProTRP:GUS显示TRP仅在毛状体中表达。与野生型相比,TRP功能缺失突变体(trp)在花、茎生叶和主花序茎上的毛状体数量增加。相反,用外源GA处理后,TRP过表达系(TRP-Ox)在茎生叶和主花序茎上的毛状体数量减少。此外,GA处理后,trp植株中毛状体起始调节因子(GIS、GIS2、ZFP8、GL1和GL3)的表达增加,而TRP-Ox系中这些调节因子的表达减少。在体内和体外实验中均观察到TRP与ZFP5发生物理相互作用,ZFP5是一种C2H2转录因子,通过GA信号通路控制毛状体细胞发育。基于这些结果,我们认为TRP在毛状体起始调节因子的上游发挥作用,并抑制ZFP5与ZFP8启动子的结合。