A plant viral effector subverts FER‐RALF1 module‐mediated intracellular immunity

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Penghuan Rui, Zhaoxing Jia, Xinxin Fang, Tianqi Yu, Wenqi Mao, Jiajia Lin, Hongying Zheng, Yuwen Lu, Feng Yu, Jianping Chen, Fei Yan, Guanwei Wu
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Abstract

SummaryThe receptor‐like kinase FERONIA (FER) is a prominent member of the Catharanthus roseus RLK1 (CrRLK1L) family, functioning as a modulator of immune receptor kinase complex formation in response to rapid alkalinization factors (RALFs). Typically, FER recognizes mature extracellular RALFs to combat bacterial and fungal infections. However, any role of the FER‐RALF signalling cascade in plant viral infections remains unexplored. Here, we used turnip mosaic virus (TuMV), an important member of the genus Potyvirus, and the host Nicotiana benthamiana as a model system to explore the role of the FER‐RALF cascade in plant–virus interactions. RALF1 from N. benthamiana (NbRALF1) positively regulated host resistance to inhibit TuMV infection. Co‐expression studies showed that this process does not involve the conserved RRXL and YISY motifs typically associated with RALF function. Instead, NbRALF1 induced cell death and significantly inhibited TuMV infection in a manner that depends on the entire RALF1 sequence and also NbFER. These results suggest a novel mechanism where NbRALF1 may inhibit viral infection through intracellular interactions with NbFER, differing from the previously reported extracellular FER‐RALF interactions that induce resistance to fungi and bacteria. Furthermore, we discovered that TuMV 6K2 interacts with NbRALF1 and promotes its degradation through the 26S proteasome pathway, thereby counteracting the host resistance induced by the NbFER‐NbRALF1 cascade. Our findings imply the existence of an uncharacterized intracellular immunity signalling pathway mediated by the NbFER‐NbRALF1 cascade and reveal a mechanism by which plant viruses counteract RALF1‐FER module‐mediated immunity.
一种植物病毒效应物颠覆了 FER-RALF1 模块介导的细胞内免疫力
FERONIA受体样激酶(FERONIA receptor - like kinase, FER)是Catharanthus roseus RLK1 (CrRLK1L)家族的重要成员,在快速碱化因子(ralf)的作用下,作为免疫受体激酶复合物形成的调节剂。通常,FER识别成熟的细胞外ralf来对抗细菌和真菌感染。然而,FER - RALF信号级联在植物病毒感染中的任何作用仍未被探索。本研究以芜菁花叶病毒(turnip mosaic virus, TuMV)为研究对象,以其宿主烟叶(Nicotiana benthamiana)为模型系统,探讨了FER - RALF级联在植物与病毒相互作用中的作用。来自benthamiana的RALF1 (NbRALF1)正调控宿主对TuMV感染的抗性。共表达研究表明,这一过程不涉及通常与RALF功能相关的保守的RRXL和YISY基序。相反,NbRALF1诱导细胞死亡,并以依赖于整个RALF1序列和NbFER的方式显著抑制TuMV感染。这些结果表明,NbRALF1可能通过细胞内与NbFER的相互作用抑制病毒感染,这与之前报道的细胞外FER - RALF相互作用诱导对真菌和细菌的抗性不同。此外,我们发现TuMV 6K2与NbRALF1相互作用,并通过26S蛋白酶体途径促进其降解,从而抵消NbFER - NbRALF1级联诱导的宿主抗性。我们的研究结果表明,存在一个由NbFER - NbRALF1级联介导的未表征的细胞内免疫信号通路,并揭示了植物病毒对抗RALF1 - FER模块介导的免疫的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Biotechnology Journal
Plant Biotechnology Journal 生物-生物工程与应用微生物
CiteScore
20.50
自引率
2.90%
发文量
201
审稿时长
1 months
期刊介绍: Plant Biotechnology Journal aspires to publish original research and insightful reviews of high impact, authored by prominent researchers in applied plant science. The journal places a special emphasis on molecular plant sciences and their practical applications through plant biotechnology. Our goal is to establish a platform for showcasing significant advances in the field, encompassing curiosity-driven studies with potential applications, strategic research in plant biotechnology, scientific analysis of crucial issues for the beneficial utilization of plant sciences, and assessments of the performance of plant biotechnology products in practical applications.
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