Cargando…

Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences

Pattern recognition receptors (PRRs) sense microbial patterns and activate innate immunity against attempted microbial invasions. The leucine‐rich repeat receptor kinases (LRR‐RK) FLS2 and EFR, and the LRR receptor protein (LRR‐RP) receptors RLP23 and RLP42, respectively, represent prototypical memb...

Descripción completa

Detalles Bibliográficos
Autores principales: Wan, Wei‐Lin, Zhang, Lisha, Pruitt, Rory, Zaidem, Maricris, Brugman, Rik, Ma, Xiyu, Krol, Elzbieta, Perraki, Artemis, Kilian, Joachim, Grossmann, Guido, Stahl, Mark, Shan, Libo, Zipfel, Cyril, van Kan, Jan A. L., Hedrich, Rainer, Weigel, Detlef, Gust, Andrea A., Nürnberger, Thorsten
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6367016/
https://www.ncbi.nlm.nih.gov/pubmed/30252144
http://dx.doi.org/10.1111/nph.15497
_version_ 1783393707868815360
author Wan, Wei‐Lin
Zhang, Lisha
Pruitt, Rory
Zaidem, Maricris
Brugman, Rik
Ma, Xiyu
Krol, Elzbieta
Perraki, Artemis
Kilian, Joachim
Grossmann, Guido
Stahl, Mark
Shan, Libo
Zipfel, Cyril
van Kan, Jan A. L.
Hedrich, Rainer
Weigel, Detlef
Gust, Andrea A.
Nürnberger, Thorsten
author_facet Wan, Wei‐Lin
Zhang, Lisha
Pruitt, Rory
Zaidem, Maricris
Brugman, Rik
Ma, Xiyu
Krol, Elzbieta
Perraki, Artemis
Kilian, Joachim
Grossmann, Guido
Stahl, Mark
Shan, Libo
Zipfel, Cyril
van Kan, Jan A. L.
Hedrich, Rainer
Weigel, Detlef
Gust, Andrea A.
Nürnberger, Thorsten
author_sort Wan, Wei‐Lin
collection PubMed
description Pattern recognition receptors (PRRs) sense microbial patterns and activate innate immunity against attempted microbial invasions. The leucine‐rich repeat receptor kinases (LRR‐RK) FLS2 and EFR, and the LRR receptor protein (LRR‐RP) receptors RLP23 and RLP42, respectively, represent prototypical members of these two prominent and closely related PRR families. We conducted a survey of Arabidopsis thaliana immune signaling mediated by these receptors to address the question of commonalities and differences between LRR‐RK and LRR‐RP signaling. Quantitative differences in timing and amplitude were observed for several early immune responses, with RP‐mediated responses typically being slower and more prolonged than those mediated by RKs. Activation of RLP23, but not FLS2, induced the production of camalexin. Transcriptomic analysis revealed that RLP23‐regulated genes represent only a fraction of those genes differentially expressed upon FLS2 activation. Several positive and negative regulators of FLS2‐signaling play similar roles in RLP23 signaling. Intriguingly, the cytoplasmic receptor kinase BIK1, a positive regulator of RK signaling, acts as a negative regulator of RP‐type immune receptors in a manner dependent on BIK1 kinase activity. Our study unveiled unexpected differences in two closely related receptor systems and reports a new negative role of BIK1 in plant immunity.
format Online
Article
Text
id pubmed-6367016
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-63670162019-05-23 Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences Wan, Wei‐Lin Zhang, Lisha Pruitt, Rory Zaidem, Maricris Brugman, Rik Ma, Xiyu Krol, Elzbieta Perraki, Artemis Kilian, Joachim Grossmann, Guido Stahl, Mark Shan, Libo Zipfel, Cyril van Kan, Jan A. L. Hedrich, Rainer Weigel, Detlef Gust, Andrea A. Nürnberger, Thorsten New Phytol Research Pattern recognition receptors (PRRs) sense microbial patterns and activate innate immunity against attempted microbial invasions. The leucine‐rich repeat receptor kinases (LRR‐RK) FLS2 and EFR, and the LRR receptor protein (LRR‐RP) receptors RLP23 and RLP42, respectively, represent prototypical members of these two prominent and closely related PRR families. We conducted a survey of Arabidopsis thaliana immune signaling mediated by these receptors to address the question of commonalities and differences between LRR‐RK and LRR‐RP signaling. Quantitative differences in timing and amplitude were observed for several early immune responses, with RP‐mediated responses typically being slower and more prolonged than those mediated by RKs. Activation of RLP23, but not FLS2, induced the production of camalexin. Transcriptomic analysis revealed that RLP23‐regulated genes represent only a fraction of those genes differentially expressed upon FLS2 activation. Several positive and negative regulators of FLS2‐signaling play similar roles in RLP23 signaling. Intriguingly, the cytoplasmic receptor kinase BIK1, a positive regulator of RK signaling, acts as a negative regulator of RP‐type immune receptors in a manner dependent on BIK1 kinase activity. Our study unveiled unexpected differences in two closely related receptor systems and reports a new negative role of BIK1 in plant immunity. John Wiley and Sons Inc. 2018-10-25 2019-03 /pmc/articles/PMC6367016/ /pubmed/30252144 http://dx.doi.org/10.1111/nph.15497 Text en © 2018 The Authors New Phytologist © 2018 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Wan, Wei‐Lin
Zhang, Lisha
Pruitt, Rory
Zaidem, Maricris
Brugman, Rik
Ma, Xiyu
Krol, Elzbieta
Perraki, Artemis
Kilian, Joachim
Grossmann, Guido
Stahl, Mark
Shan, Libo
Zipfel, Cyril
van Kan, Jan A. L.
Hedrich, Rainer
Weigel, Detlef
Gust, Andrea A.
Nürnberger, Thorsten
Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences
title Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences
title_full Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences
title_fullStr Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences
title_full_unstemmed Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences
title_short Comparing Arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals BIK1‐dependent differences
title_sort comparing arabidopsis receptor kinase and receptor protein‐mediated immune signaling reveals bik1‐dependent differences
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6367016/
https://www.ncbi.nlm.nih.gov/pubmed/30252144
http://dx.doi.org/10.1111/nph.15497
work_keys_str_mv AT wanweilin comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT zhanglisha comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT pruittrory comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT zaidemmaricris comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT brugmanrik comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT maxiyu comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT krolelzbieta comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT perrakiartemis comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT kilianjoachim comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT grossmannguido comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT stahlmark comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT shanlibo comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT zipfelcyril comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT vankanjanal comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT hedrichrainer comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT weigeldetlef comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT gustandreaa comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences
AT nurnbergerthorsten comparingarabidopsisreceptorkinaseandreceptorproteinmediatedimmunesignalingrevealsbik1dependentdifferences