Huh Sung Un, Lee Gil-Je, Jung Ji Hoon, Kim Yunsik, Kim Young Jin, Paek Kyung-Hee
College of Life Sciences and Biotechnology, Korea University, 1, 5-ga, Anam-dong, Sungbuk-gu, Seoul 136-701, Republic of Korea.
Sci Rep. 2015 Jan 23;5:7981. doi: 10.1038/srep07981.
Plants are constantly exposed to pathogens and environmental stresses. To minimize damage caused by these potentially harmful factors, plants respond by massive transcriptional reprogramming of various stress-related genes via major transcription factor families. One of the transcription factor families, WRKY, plays an important role in diverse stress response of plants and is often useful to generate genetically engineered crop plants. In this study, we carried out functional characterization of CaWRKYa encoding group I WRKY member, which is induced during hypersensitive response (HR) in hot pepper (Capsicum annuum) upon Tobacco mosaic virus (TMV) infection. CaWRKYa was involved in L-mediated resistance via transcriptional reprogramming of pathogenesis-related (PR) gene expression and affected HR upon TMV-P0 infection. CaWRKYa acts as a positive regulator of this defense system and could bind to the W-box of diverse PR genes promoters. Furthermore, we found Capsicum annuum mitogen-activated protein kinase 1 (CaMK1) and 2 (CaMK2) interacted with CaWRKYa and phosphorylated the SP clusters but not the MAPK docking (D)-domain of CaWRKYa. Thus, these results demonstrated that CaWRKYa was regulated by CaMK1 and CaMK2 at the posttranslational level in hot pepper.
植物不断受到病原体和环境胁迫的影响。为了将这些潜在有害因素造成的损害降至最低,植物通过主要转录因子家族对各种胁迫相关基因进行大规模转录重编程来做出反应。转录因子家族之一的WRKY在植物的多种胁迫反应中发挥重要作用,并且通常有助于培育转基因作物。在本研究中,我们对编码I组WRKY成员的CaWRKYa进行了功能表征,该成员在烟草花叶病毒(TMV)感染后辣椒(Capsicum annuum)的过敏反应(HR)过程中被诱导。CaWRKYa通过对病程相关(PR)基因表达的转录重编程参与L介导的抗性,并影响TMV-P0感染后的HR。CaWRKYa作为该防御系统的正调控因子,可与多种PR基因启动子的W盒结合。此外,我们发现辣椒丝裂原活化蛋白激酶1(CaMK1)和2(CaMK2)与CaWRKYa相互作用,并使CaWRKYa的SP簇磷酸化,但不使其MAPK对接(D)结构域磷酸化。因此,这些结果表明CaWRKYa在辣椒中在翻译后水平受到CaMK1和CaMK2的调控。