Hu Yang, Cheng Yuan, Yu Xuena, Liu Jie, Yang Lushan, Gao Yurong, Ke Guihua, Zhou Min, Mu Bo, Xiao Shunyuan, Wang Yuejin, Wen Ying-Qiang
State Key Laboratory of Crop Stress Biology for Arid Areas, College of Horticulture, Northwest A&F University, Yangling, Shaanxi, 712100, China.
Key Laboratory of Horticultural Plant Biology and Germplasm Innovation in Northwest China, Ministry of Agriculture and Rural Affairs, Yangling, Shaanxi, 712100, China.
New Phytol. 2021 Jun;230(5):2029-2046. doi: 10.1111/nph.17285. Epub 2021 Mar 26.
Calcium-dependent protein kinases (CDPKs) play vital roles in metabolic regulations and stimuli responses in plants. However, little is known about their function in grapevine. Here, we report that VpCDPK9 and VpCDPK13, two paralogous CDPKs from Vitis pseudoreticulata accession Baihe-35-1, appear to positively regulate powdery mildew resistance. The transcription of them in leaves of 'Baihe-35-1' were differentially induced upon powdery mildew infection. Overexpression of VpCDPK9-YFP or VpCDPK13-YFP in the V. vinifera susceptible cultivar Thompson Seedless resulted in enhanced resistance to powdery mildew (YFP, yellow fluorescent protein). This might be due to elevation of SA and ethylene production, and excess accumulation of H O and callose in penetrated epidermal cells and/or the mesophyll cells underneath. Ectopic expression of VpCDPK9-YFP in Arabidopsis resulted in varied degrees of reduced stature, pre-mature senescence and enhanced powdery mildew resistance. However, these phenotypes were abolished in VpCDPK9-YFP transgenic lines impaired in SA signaling (pad4sid2) or ethylene signaling (ein2). Moreover, both of VpCDPK9 and VpCDPK13 were found to interact with and potentially phosphorylate VpMAPK3, VpMAPK6, VpACS1 and VpACS2 in vivo (ACS, 1-aminocyclopropane-1-carboxylic acid (ACC) synthase; MAPK, mitogen-activated protein kinase). These results suggest that VpCDPK9 and VpCDPK13 contribute to powdery mildew resistance via positively regulating SA and ethylene signaling in grapevine.
钙依赖蛋白激酶(CDPKs)在植物的代谢调控和刺激响应中发挥着至关重要的作用。然而,它们在葡萄中的功能却鲜为人知。在此,我们报道了来自假拟葡萄品种‘白河-35-1’的两个同源CDPKs,即VpCDPK9和VpCDPK13,似乎正向调控对白粉病的抗性。在白粉病侵染后,它们在‘白河-35-1’叶片中的转录受到差异诱导。在感病的酿酒葡萄品种‘汤普森无核’中过表达VpCDPK9-YFP或VpCDPK13-YFP,导致对白粉病的抗性增强(YFP,黄色荧光蛋白)。这可能是由于水杨酸(SA)和乙烯产量的升高,以及在被穿透的表皮细胞和/或其下方的叶肉细胞中过氧化氢(H₂O₂)和胼胝质的过量积累。VpCDPK9-YFP在拟南芥中的异位表达导致了不同程度的植株矮小、早衰以及白粉病抗性增强。然而,在SA信号传导受损(pad4sid2)或乙烯信号传导受损(ein2)的VpCDPK9-YFP转基因系中,这些表型消失了。此外,还发现VpCDPK9和VpCDPK13在体内与VpMAPK3、VpMAPK6、VpACS1和VpACS2相互作用并可能使其磷酸化(ACS,1-氨基环丙烷-1-羧酸(ACC)合酶;MAPK,丝裂原活化蛋白激酶)。这些结果表明,VpCDPK9和VpCDPK13通过正向调控葡萄中的SA和乙烯信号传导来促进对白粉病的抗性。