Flg22‐induced Ca2+ increases undergo desensitization and resensitization

细胞生物学 内体 生物 脱敏(药物) 鞭毛蛋白 内吞作用 胞浆 受体 同源性脱敏 先天免疫系统 T细胞受体 生物化学 免疫学 细胞内 免疫系统 T细胞
作者
Yuan Chi,Chao Wang,Yongsheng Wang,Di Wan,Feifei Huang,Zhonghao Jiang,Bridget M. Crawford,Tuan Vo‐Dinh,Fang Yuan,Fei-Hua Wu,Zhen‐Ming Pei
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:44 (12): 3793-3805 被引量:16
标识
DOI:10.1111/pce.14186
摘要

Abstract The flagellin epitope flg22, a pathogen‐associated molecular pattern (PAMP), binds to the receptor‐like kinase FLAGELLIN SENSING2 (FLS2), and triggers Ca 2+ influx across the plasma membrane (PM). The flg22‐induced increases in cytosolic Ca 2+ concentration ([Ca 2+ ] i ) (FICA) play a crucial role in plant innate immunity. It's well established that the receptor FLS2 and reactive oxygen species (ROS) burst undergo sensitivity adaptation after flg22 stimulation, referred to as desensitization and resensitization, to prevent over responses to pathogens. However, whether FICA also mount adaptation mechanisms to ensure appropriate and efficient responses against pathogens remains poorly understood. Here, we analysed systematically [Ca 2+ ] i increases upon two successive flg22 treatments, recorded and characterized rapid desensitization but slow resensitization of FICA in Arabidopsis thaliana . Pharmacological analyses showed that the rapid desensitization might be synergistically regulated by ligand‐induced FLS2 endocytosis as well as the PM depolarization. The resensitization of FICA might require de novo FLS2 protein synthesis. FICA resensitization appeared significantly slower than FLS2 protein recovery, suggesting additional regulatory mechanisms of other components, such as flg22‐related Ca 2+ permeable channels. Taken together, we have carefully defined the FICA sensitivity adaptation, which will facilitate further molecular and genetic dissection of the Ca 2+ ‐mediated adaptive mechanisms in PAMP‐triggered immunity.

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