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Published on: October 29, 2011
Flg22-induced Ca2+ increases undergo desensitization and resensitization.
Yuan Chi1,2,3,4, Chao Wang3, Mengyun Wang1,3
1College of Life Sciences, Zhejiang University, Hangzhou, China.
Plant immune responses involving calcium influx (FICA) show rapid desensitization and slow resensitization after pathogen-associated molecular pattern (PAMP) flg22 stimulation. This adaptation ensures appropriate plant immunity.
Area of Science:
- Plant immunology
- Molecular plant pathology
- Calcium signaling
Background:
- Pathogen-associated molecular patterns (PAMPs) like flagellin epitope flg22 trigger plant immune responses via the receptor FLAGELLIN SENSING2 (FLS2).
- PAMP-triggered immunity involves calcium influx (FICA) and reactive oxygen species (ROS) burst, which undergo adaptation (desensitization and resensitization) to prevent over-responses.
- The adaptation mechanisms of FICA are not well understood.
Purpose of the Study:
- To systematically analyze the adaptation mechanisms of flg22-induced increases in cytosolic Ca2+ concentration (FICA) in Arabidopsis thaliana.
- To characterize the kinetics of FICA desensitization and resensitization upon successive flg22 treatments.
- To investigate the molecular players involved in FICA adaptation.
Main Methods:
- Two successive flg22 treatments were applied to Arabidopsis thaliana.
- Cytosolic Ca2+ concentration ([Ca2+]i) increases (FICA) were recorded and analyzed.
- Pharmacological approaches were used to investigate the roles of FLS2 endocytosis, PM depolarization, and de novo protein synthesis in FICA adaptation.
Main Results:
- FICA exhibited rapid desensitization and slow resensitization following sequential flg22 stimulation.
- Rapid FICA desensitization appears to be regulated by ligand-induced FLS2 endocytosis and PM depolarization.
- FICA resensitization requires de novo FLS2 protein synthesis and is slower than FLS2 protein recovery, suggesting involvement of other regulatory components.
Conclusions:
- FICA sensitivity adaptation is crucial for appropriate plant immune responses to pathogens.
- The study defines the adaptation kinetics of FICA, highlighting rapid desensitization and slow resensitization.
- Further research into Ca2+-mediated adaptive mechanisms in PAMP-triggered immunity is warranted.
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