烟草
细胞生物学
生物
病毒
病毒学
免疫系统
脂滴
化学
免疫
水杨酸
先天免疫系统
肌动蛋白
植物病毒
植物对草食的防御
过敏反应
细胞
溶解循环
程序性细胞死亡
作者
Lifan Zhou,Zhiyan Wen,Chenchen Zhong,Dingliang Zhang,Qianshen Zhang,Ruiqi Wang,Jiangning Duan,Kun Zhang,Zhen Li,Xiaoyun Zhao,Aodong Mei,Yuanzhi Wang,Tong Zhou,Linlin Du,Jinfang Chu,Shujing Cheng,Xiaofei Zhao,Meng Yang,Dawei Li,Savithramma P. Dinesh‐Kumar
标识
DOI:10.1073/pnas.2600696123
摘要
The role of lipid droplets (LDs), typically regarded as storage sites for neutral lipid, in plant defense remains poorly understood. In our study with barley stripe mosaic virus (BSMV), a (+)ssRNA virus, we found that infection significantly increases LD abundance in Nicotiana benthamiana and wheat. Using split-TurboID–based proximity labeling, we identified LD-associated proteins (LDAPs) at ER–chloroplast contact sites. Increasing LD formation by overexpressing mouse FIT2 or plant NbLDAP2.1 decreased viral accumulation, whereas impairing LD formation led to higher infection. Live cell imaging and genetic studies revealed that LDs move along actin filaments, cluster around chloroplasts, and contribute to antiviral immunity through a salicylic acid (SA)-dependent mechanism. Moreover, LDs conferred resistance to multiple (+)ssRNA viruses in N. benthamiana and a (–)ssRNA virus in rice. These findings uncover a role for LDs in SA-dependent antiviral defense that does not compromise growth, offering potential approaches for engineering virus-resistant crops.
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