烟草
生物
效应器
拟南芥
盲蝽科
植物对草食的防御
植物免疫
植物蛋白
荨麻疹叶螨
细胞生物学
肽基脯氨酰异构酶
拟南芥
植物
病毒学
生物化学
半翅目
有害生物分析
突变体
异构酶
病毒
基因
食品科学
作者
Yumei Dong,Jiangxuan Zhou,Yuxia Yang,Wangshan Lu,Yan Jin,Xingge Huang,Wendan Zhang,Jifen Li,Gan Ai,Zhiyuan Yin,Danyu Shen,Maofeng Jing,Daolong Dou,Ai Xia
摘要
Summary Apolygus lucorum (Meyer‐Dur; Heteroptera: Miridae) is a major agricultural pest infesting crops, vegetables, and fruit trees. During feeding, A. lucorum secretes a plethora of effectors into its hosts to promote infestation. However, the molecular mechanisms of these effectors manipulating plant immunity are largely unknown. Here, we investigated the molecular mechanism underlying the effector Al106 manipulation of plant–insect interaction by RNA interference, electrical penetration graph, insect and pathogen bioassays, protein–protein interaction studies, and protein ubiquitination experiment. Expression of Al106 in Nicotiana benthamiana inhibits pathogen‐associated molecular pattern‐induced cell death and reactive oxygen species burst, and promotes insect feeding and plant pathogen infection. In addition, peptidyl‐prolyl cis‐trans isomerase (PPIase) activity of Al106 is required for its function to inhibit PTI.Al106 interacts with a plant U‐box (PUB) protein, PUB33, from N. benthamiana and Arabidopsis thaliana . We also demonstrated that PUB33 is a positive regulator of plant immunity. Furthermore, an in vivo assay revealed that Al106 inhibits ubiquitination of NbPUB33 depending on PPIase activity. Our findings revealed that a novel cyclophilin effector may interact with plant PUB33 to suppress plant immunity and facilitate insect feeding in a PPIase activity‐dependent manner.
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