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对一种真菌效应子的识别增强了棉花中病原体相关分子模式触发的免疫反应。

Recognition of a Fungal Effector Potentiates Pathogen-Associated Molecular Pattern-Triggered Immunity in Cotton.

作者信息

Sun Lifan, Li Xiangguo, Zhong Jiajie, Wang Yu, Li Baiyang, Ye Ziqin, Zhang Jie

机构信息

Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Adv Sci (Weinh). 2025 Jan;12(1):e2407787. doi: 10.1002/advs.202407787. Epub 2024 Nov 3.

Abstract

Plants are equipped with multi-layered immune systems that recognize pathogen-derived elicitors to activate immunity. Verticillium dahliae is a soil-borne fungus that infects a broad range of plants and causes devastating wilt disease. The mechanisms underlying immune recognition between plants and V. dahliae remain elusive. Here, a V. dahliae secretory protein, elicitor of plant defense gene (VdEPD1), acts as an elicitor that triggers defense responses in both Nicotiana benthamiana and cotton plants is identified. Targeted gene deletion of VdEPD1 enhances V. dahliae virulence in plants. Expression of VdEPD1 triggers the accumulation of reactive oxygen species (ROS) and the activation of cell death in cotton plants. Gossypium barbadense EPD1-interacting receptor-like cytoplasmic kinase (GbEIR5A) and GbEIR5D interact with VdEPD1. Silencing of GbEIR5A/D significantly impairs VdEPD1-triggered cell death in cotton plants, indicating the contribution of GbEIR5A/D to VdEPD1-activated effector-triggered immunity (ETI). VdEPD1 stimulates the expression of GbEIR5A and GbEIR5D in cotton plants. Interestingly, cotton plants with silenced GbEIR5A/D genes exhibit compromised pathogen-associated molecular patterns (PAMPs)-triggered ROS accumulation, whereas overexpression of GbEIR5A or GbEIR5D enhances PAMP-induced ROS. These findings indicate that recognition of VdEPD1 potentiates GbEIRs to enhance cotton PAMP-triggered immunity (PTI), uncovering a cooperative interplay of PTI and ETI in cotton.

摘要

植物具备多层免疫系统,可识别病原体衍生的激发子以激活免疫反应。大丽轮枝菌是一种土传真菌,可感染多种植物并引发毁灭性的枯萎病。植物与大丽轮枝菌之间免疫识别的潜在机制仍不清楚。在此,鉴定出一种大丽轮枝菌分泌蛋白——植物防御基因激发子(VdEPD1),它作为一种激发子,可在本氏烟草和棉花植株中触发防御反应。对VdEPD1进行靶向基因缺失会增强大丽轮枝菌在植物中的毒力。VdEPD1的表达会引发棉花植株中活性氧(ROS)的积累和细胞死亡的激活。海岛棉EPD1相互作用受体样胞质激酶(GbEIR5A)和GbEIR5D与VdEPD1相互作用。沉默GbEIR5A/D会显著削弱VdEPD1在棉花植株中引发的细胞死亡,表明GbEIR5A/D对VdEPD1激活的效应子触发免疫(ETI)有作用。VdEPD1刺激棉花植株中GbEIR5A和GbEIR5D的表达。有趣的是,GbEIR5A/D基因沉默的棉花植株表现出病原体相关分子模式(PAMP)触发的ROS积累受损,而GbEIR5A或GbEIR5D的过表达会增强PAMP诱导的ROS。这些发现表明,对VdEPD1的识别增强了GbEIRs以增强棉花PAMP触发的免疫(PTI),揭示了棉花中PTI和ETI的协同相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d562/11714242/9dc9ffbd2786/ADVS-12-2407787-g007.jpg

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