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一种葡萄霜霉病菌的 RXLR 效应蛋白靶向质体蛋白 PsbP 以抑制葡萄中的 ROS 产生。

A Plasmopara viticola RXLR effector targets a chloroplast protein PsbP to inhibit ROS production in grapevine.

机构信息

State Key Laboratory of Crop Stress Biology in Arid Areas (Northwest A&F University), Yangling, Shaanxi, P.R. China.

College of Horticulture, Northwest A&F University, Yangling, Shaanxi, P.R. China.

出版信息

Plant J. 2021 Jun;106(6):1557-1570. doi: 10.1111/tpj.15252. Epub 2021 Apr 24.

Abstract

Pathogens secrete a large number of effectors that manipulate host processes to create an environment conducive to pathogen colonization. However, the underlying mechanisms by which Plasmopara viticola effectors manipulate host plant cells remain largely unclear. In this study, we reported that RXLR31154, a P. viticola RXLR effector, was highly expressed during the early stages of P. viticola infection. In our study, stable expression of RXLR31154 in grapevine (Vitis vinifera) and Nicotiana benthamiana promoted leaf colonization by P. viticola and Phytophthora capsici, respectively. By yeast two-hybrid screening, the 23-kDa oxygen-evolving enhancer 2 (VpOEE2 or VpPsbP), encoded by the PsbP gene, in Vitis piasezkii accession Liuba-8 was identified as a host target of RXLR31154. Overexpression of VpPsbP enhanced susceptibility to P. viticola in grapevine and P. capsici in N. benthamiana, and silencing of NbPsbPs, the homologs of PsbP in N. benthamiana, reduced P. capcisi colonization, indicating that PsbP is a susceptibility factor. RXLR31154 and VpPsbP protein were co-localized in the chloroplast. Moreover, VpPsbP reduced H O accumulation and activated the O signaling pathway in grapevine. RXLR31154 could stabilize PsbP. Together, our data revealed that RXLR31154 reduces H O accumulation and activates the O signaling pathway through stabilizing PsbP, thereby promoting disease.

摘要

病原体分泌大量效应子,操纵宿主进程,创造有利于病原体定殖的环境。然而,葡萄霜霉病菌效应子操纵宿主植物细胞的潜在机制在很大程度上仍不清楚。在本研究中,我们报道了葡萄霜霉病菌 RXLR31154 效应子在葡萄霜霉病菌感染的早期阶段高度表达。在我们的研究中,RXLR31154 在葡萄(Vitis vinifera)和烟草(Nicotiana benthamiana)中的稳定表达分别促进了葡萄霜霉病菌和辣椒疫霉的叶片定殖。通过酵母双杂交筛选,鉴定出来自葡萄品种 Liuba-8 的 PsbP 基因编码的 23kDa 放氧增强子 2(VpOEE2 或 VpPsbP)是 RXLR31154 的宿主靶标。在葡萄中过表达 VpPsbP 增强了对葡萄霜霉病菌的敏感性,在烟草中过表达 VpPsbP 增强了对辣椒疫霉的敏感性,而 N. benthamiana 中 PsbP 的同源物 NbPsbPs 的沉默减少了辣椒疫霉的定殖,表明 PsbP 是一个感病因子。RXLR31154 和 VpPsbP 蛋白在叶绿体中共定位。此外,VpPsbP 减少了 H2O2 的积累并激活了葡萄中的 O 信号通路。RXLR31154 可以稳定 PsbP。综上所述,我们的数据表明,RXLR31154 通过稳定 PsbP 减少 H2O2 积累并激活 O 信号通路,从而促进疾病的发生。

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