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dsRNA-induced immunity targets plasmodesmata and is suppressed by viral movement proteins

胼胝质 胞间连丝 生物 细胞生物学 RNA沉默 激发子 烟草花叶病毒 拟南芥 烟草病毒 黄瓜病毒 烟草 植物病毒 黄瓜花叶病毒 病毒学 病毒 RNA干扰 核糖核酸 植物 生物化学 细胞壁 细胞质 基因 突变体
作者
Caiping Huang,Ana Rocio Sede,Laura Elvira-González,Yan Yan,Miguel Rodriguez,Jérôme Mutterer,Emmanuel Boutant,Libo Shan,Manfred Heinlein
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:35 (10): 3845-3869 被引量:8
标识
DOI:10.1093/plcell/koad176
摘要

Abstract Emerging evidence indicates that in addition to its well-recognized functions in antiviral RNA silencing, dsRNA elicits pattern-triggered immunity (PTI), likely contributing to plant resistance against virus infections. However, compared to bacterial and fungal elicitor-mediated PTI, the mode-of-action and signaling pathway of dsRNA-induced defense remain poorly characterized. Here, using multicolor in vivo imaging, analysis of GFP mobility, callose staining, and plasmodesmal marker lines in Arabidopsis thaliana and Nicotiana benthamiana, we show that dsRNA-induced PTI restricts the progression of virus infection by triggering callose deposition at plasmodesmata, thereby likely limiting the macromolecular transport through these cell-to-cell communication channels. The plasma membrane-resident SOMATIC EMBRYOGENESIS RECEPTOR-LIKE KINASE 1, the BOTRYTIS INDUCED KINASE1/AVRPPHB SUSCEPTIBLE1-LIKE KINASE1 kinase module, PLASMODESMATA-LOCATED PROTEINs 1/2/3, as well as CALMODULIN-LIKE 41 and Ca2+ signals are involved in the dsRNA-induced signaling leading to callose deposition at plasmodesmata and antiviral defense. Unlike the classical bacterial elicitor flagellin, dsRNA does not trigger a detectable reactive oxygen species (ROS) burst, substantiating the idea that different microbial patterns trigger partially shared immune signaling frameworks with distinct features. Likely as a counter strategy, viral movement proteins from different viruses suppress the dsRNA-induced host response leading to callose deposition to achieve infection. Thus, our data support a model in which plant immune signaling constrains virus movement by inducing callose deposition at plasmodesmata and reveals how viruses counteract this layer of immunity.
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