State Key Laboratory of Crop Stress Biology in Arid Areas (Northwest A&F University) Yangling, Shaanxi, People's Republic of China.
College of Horticulture, Northwest A&F University, Yangling, Shaanxi, People's Republic of China.
Plant J. 2022 Oct;112(1):104-114. doi: 10.1111/tpj.15933. Epub 2022 Aug 19.
Grapevine downy mildew, caused by Plasmopara viticola, is one of the most devastating diseases in viticulture. Plasmopara viticola secretes RxLR effectors to modulate immune responses in grapevine. Here, we report an RxLR effector RxLR50253 from P. viticola that can interfere with plant immune response and thus promote pathogen colonization. RxLR50253 was induced at an early stage of P. viticola infection and could suppress elicitor (INF1 and Bax)-triggered cell death. RxLR50253 promote pathogen colonization in both tobacco and grapevine leaves. VpBPA1 was found to be the host target of RxLR50253 by yeast two-hybrid screening, and interaction between RxLR50253 and VpBPA1 was confirmed by multiple in vivo and in vitro assays. Further analysis revealed that VpBPA1 promoted pathogen colonization and decreased H O accumulation in transgenic tobacco and grapevine, while there was enhanced resistance and H O accumulation in NbBPA1-silenced Nicotiana benthamiana leaves. Moreover, transient expression of VpBPA1 in NbBPA1-silenced N. benthamiana leaves could reduce the accumulation of H O . Experiments in vivo demonstrated that RxLR50253 inhibits degradation of VpBPA1. Taken together, our findings showed that RxLR50253 targets and stabilizes VpBPA1 to attenuate plant immunity through decreasing H O accumulation during pathogen infection.
葡萄霜霉病由葡萄生单轴霉引起,是葡萄栽培中最具破坏性的病害之一。葡萄生单轴霉分泌 RxLR 效应子来调节葡萄的免疫反应。在这里,我们报告了一个来自 P. viticola 的 RxLR 效应子 RxLR50253,它可以干扰植物的免疫反应,从而促进病原体的定植。RxLR50253 在 P. viticola 感染的早期被诱导,并且可以抑制激发子(INF1 和 Bax)引发的细胞死亡。RxLR50253 促进了烟草和葡萄叶片中病原体的定植。酵母双杂交筛选发现 VpBPA1 是 RxLR50253 的宿主靶标,并且通过多种体内和体外测定证实了 RxLR50253 和 VpBPA1 之间的相互作用。进一步的分析表明,VpBPA1 促进了转基因烟草和葡萄中病原体的定植,并减少了 H O 的积累,而在 NbBPA1 沉默的烟草原生质体叶片中则增强了抗性和 H O 的积累。此外,在 NbBPA1 沉默的烟草原生质体叶片中瞬时表达 VpBPA1 可以减少 H O 的积累。体内实验表明,RxLR50253 抑制了 VpBPA1 的降解。总之,我们的研究结果表明,RxLR50253 通过减少病原体感染过程中 H O 的积累来靶向和稳定 VpBPA1,从而减弱植物的免疫反应。