芜菁花叶病毒
烟草
病毒复制
细胞生物学
植物病毒
生物
泛素
液泡
病毒
病毒学
生物化学
基因
马铃薯Y病毒
细胞质
作者
Xiao-xian Fang,Zhaoxing Jia,Tsong-Ann Yu,Penghuan Rui,Hongying Zheng,Yuwen Lu,Jui-Chu Peng,Shaofei Rao,Jian Wu,Jianping Chen,Fei Yan,Guanwei Wu
标识
DOI:10.1093/plphys/kiae350
摘要
Abstract Emerging evidence indicates that fatty acid (FA) metabolic pathways regulate host immunity to vertebrate viruses. However, information on FA signaling in plant virus infection remains elusive. In this study, we demonstrate the importance of fatty acid desaturase (FAD), an enzyme that catalyzes the rate-limiting step in the conversion of saturated FAs into unsaturated FAs, during infection by a plant RNA virus. We previously found that the rare Kua-ubiquitin-conjugating enzyme (Kua-UEV1) fusion protein FAD4 from Nicotiana benthamiana (NbFAD4) was downregulated upon turnip mosaic virus (TuMV) infection. We now demonstrate that NbFAD4 is unstable and is degraded as TuMV infection progresses. NbFAD4 is required for TuMV replication, as it interacts with TuMV replication protein 6K2 and colocalizes with viral replication complexes. Moreover, NbFAD4 overexpression dampened the accumulation of immunity-related phytohormones and FA metabolites, and its catalytic activity appears to be crucial for TuMV infection. Finally, a yeast 2-hybrid library screen identified the vacuolar H+-ATPase component ATP6V0C as involved in NbFAD4 degradation and further suppression of TuMV infection. This study reveals the intricate role of FAD4 in plant virus infection, and sheds light on a new mechanism by which a V-ATPase is involved in plant antiviral defense.
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