Liu Xiaoyu, Singh Sanjay Kumar, Patra Barunava, Liu Yongliang, Wang Bingwu, Wang Jinsheng, Pattanaik Sitakanta, Yuan Ling
College of Agriculture, Shanxi Agricultural University, Taigu, Shanxi, China.
Department of Plant and Soil Sciences, and the Kentucky Tobacco Research and Development Center, University of Kentucky, University Drive, Lexington, KY USA.
J Exp Bot. 2021 Feb 27;72(5):1661-1676. doi: 10.1093/jxb/eraa568.
Protein phosphatases (PPs) and protein kinases (PKs) regulate numerous developmental, defense, and phytohormone signaling processes in plants. However, the underlying regulatory mechanism governing biosynthesis of specialized metabolites, such as alkaloids, by the combined effects of PPs and PKs, is insufficiently understood. Here, we report the characterization of a group B protein phosphatase type 2C, NtPP2C2b, that likely acts upstream of the NICOTINE2 locus APETALA 2/Ethylene Response Factors (AP2/ERFs), to regulate nicotine biosynthesis in tobacco. Similar to the nicotine pathway genes, NtPP2C2b is highly expressed in roots and induced by jasmonic acid (JA). Overexpression of NtPP2C2b in transgenic hairy roots or stable transgenic tobacco plants repressed nicotine pathway gene expression and reduced nicotine accumulation. Additionally, transient overexpression of NtPP2C2b, together with the NtERF221, repressed transactivation of the quinolinate phosphoribosyltransferase promoter in tobacco cells. We further demonstrate that the JA-responsive tobacco mitogen-activated protein kinase (MAPK) 4 interacts with NtPP2C2b in yeast and plant cells. Conditional overexpression of NtMPK4 in tobacco hairy roots up-regulated nicotine pathway gene expression and increased nicotine accumulation. Our findings suggest that a previously uncharacterized PP-PK module acts to modulate alkaloid biosynthesis, highlighting the importance of post-translational control in the biosynthesis of specialized plant metabolites.
蛋白磷酸酶(PPs)和蛋白激酶(PKs)调节植物中众多的发育、防御和植物激素信号传导过程。然而,对于PPs和PKs的联合作用调控生物碱等特殊代谢产物生物合成的潜在调控机制,我们还了解不足。在此,我们报道了一种B类2C型蛋白磷酸酶NtPP2C2b的特性,它可能在NICOTINE2位点的APETALA 2/乙烯反应因子(AP2/ERFs)上游起作用,以调控烟草中的尼古丁生物合成。与尼古丁途径基因相似,NtPP2C2b在根中高度表达,并受茉莉酸(JA)诱导。在转基因毛状根或稳定转基因烟草植株中过表达NtPP2C2b会抑制尼古丁途径基因的表达并减少尼古丁积累。此外,NtPP2C2b与NtERF221一起瞬时过表达,会抑制烟草细胞中喹啉酸磷酸核糖基转移酶启动子的反式激活。我们进一步证明,JA响应的烟草丝裂原活化蛋白激酶(MAPK)4在酵母和植物细胞中与NtPP2C2b相互作用。在烟草毛状根中条件性过表达NtMPK4会上调尼古丁途径基因的表达并增加尼古丁积累。我们的研究结果表明,一个先前未被表征的PP-PK模块作用于调节生物碱生物合成,突出了翻译后调控在植物特殊代谢产物生物合成中的重要性。