Xu Zhizhuo, Zeng Tuo, Li Jiawen, Zhou Li, Li Jinjin, Luo Jing, Zheng Riru, Wang Yuanyuan, Hu Hao, Wang Caiyun
Key Laboratory for Biology of Horticultural Plants, Ministry of Education, College of Horticulture & Forestry Sciences, Huazhong Agricultural University, Wuhan, China.
School of Life Sciences, Guizhou Normal University, Guiyang, China.
Front Plant Sci. 2023 Feb 20;14:1133912. doi: 10.3389/fpls.2023.1133912. eCollection 2023.
Pyrethrins, synthesized in the perennial plant , are a class of terpene mixtures with high insecticidal activity and low human toxicity, which are widely used in plant-derived pesticides. Numerous studies have identified multiple pyrethrins biosynthesis enzymes, which can be enhanced by exogenous hormones such as methyl jasmonate (MeJA). However, the mechanism by which hormone signaling regulates pyrethrins biosynthesis and the potential involvement of certain transcription factors (TFs) remain unclear. In this study, we found that the expression level of a TF in was significantly increased after treatment with plant hormones (MeJA, abscisic acid). Subsequent analysis identified this TF as a member of the basic region/leucine zipper (bZIP) family and was thus named . TcbZIP60 was localized in the nucleus, suggesting that it is involved in the transcription process. The expression profiles of were similar to those of pyrethrins synthesis genes in different flower organs and at different flowering stages. Furthermore, TcbZIP60 could directly bind to the E-box/G-box motifs in the promoters of the pyrethrins synthesis genes and to activate their expression. Transient overexpression of increased the expression levels of pyrethrins biosynthesis genes, leading to the significant accumulation of pyrethrins. Silencing of significantly downregulated pyrethrins accumulation and the expression of related genes. Overall, our results reveal a novel TF, TcbZIP60, that regulates both the terpenoid and jasmonic acid pathways of pyrethrins biosynthesis in .
除虫菊酯是在多年生植物中合成的一类具有高杀虫活性和低人体毒性的萜烯混合物,广泛用于植物源农药。众多研究已鉴定出多种除虫菊酯生物合成酶,这些酶可通过茉莉酸甲酯(MeJA)等外源激素增强。然而,激素信号调节除虫菊酯生物合成的机制以及某些转录因子(TFs)的潜在参与仍不清楚。在本研究中,我们发现用植物激素(MeJA、脱落酸)处理后,某一种TF在[植物名称未给出]中的表达水平显著增加。随后的分析确定该TF为碱性区域/亮氨酸拉链(bZIP)家族的成员,因此将其命名为TcbZIP60。TcbZIP60定位于细胞核,表明它参与转录过程。TcbZIP60的表达谱与不同花器官和不同开花阶段的除虫菊酯合成基因的表达谱相似。此外,TcbZIP60可以直接结合除虫菊酯合成基因[基因名称未给出]和[基因名称未给出]启动子中的E-box/G-box基序以激活它们的表达。TcbZIP60的瞬时过表达增加了除虫菊酯生物合成基因的表达水平,导致除虫菊酯的显著积累。TcbZIP60的沉默显著下调了除虫菊酯的积累和相关基因的表达。总体而言,我们的结果揭示了一种新型TF,TcbZIP60,它调节[植物名称未给出]中除虫菊酯生物合成的萜类和茉莉酸途径。