LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.

Chitin, an integral component of the fungal cell wall, is one of the best-studied microbe-associated molecular patterns. Previous work identified a LysM receptor-like kinase (LysM-RLK1/CERK1) as the primary chitin receptor in Arabidopsis. In order to identify proteins that interact with CERK1, we co...

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Main Authors: Mi Ha Le, Yangrong Cao, Xue-Cheng Zhang, Gary Stacey
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4103824?pdf=render
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author Mi Ha Le
Yangrong Cao
Xue-Cheng Zhang
Gary Stacey
author_facet Mi Ha Le
Yangrong Cao
Xue-Cheng Zhang
Gary Stacey
author_sort Mi Ha Le
collection DOAJ
description Chitin, an integral component of the fungal cell wall, is one of the best-studied microbe-associated molecular patterns. Previous work identified a LysM receptor-like kinase (LysM-RLK1/CERK1) as the primary chitin receptor in Arabidopsis. In order to identify proteins that interact with CERK1, we conducted a yeast two-hybrid screen using the intracellular kinase domain of CERK1 as the bait. This screen identified 54 putative CERK1-interactors. Screening mutants defective in 43 of these interacting proteins identified only two, a calmodulin like protein (At3g10190) and a leucine-rich repeat receptor like kinase (At3g14840), which differed in their response to pathogen challenge. In the present work, we focused on characterizing the LRR-RLK gene where mutations altered responses to chitin elicitation. This LRR-RLK was named LysM RLK1-interacting kinase 1 (LIK1). The interaction between CERK1 and LIK1 was confirmed by co-immunoprecipitation using protoplasts and transgenic plants. In vitro experiments showed that LIK1 was directly phosphorylated by CERK1. In vivo phosphorylation assays showed that Col-0 wild-type plants have more phosphorylated LIK1 than cerk1 mutant plants, suggesting that LIK1 may be directly phosphorylated by CERK1. Lik1 mutant plants showed an enhanced response to both chitin and flagellin elicitors. In comparison to the wild-type plants, lik1 mutant plants were more resistant to the hemibiotrophic pathogen Pseudomonas syringae, but more susceptible to the necrotrophic pathogen Sclerotinia sclerotiorum. Consistent with the enhanced susceptibility to necrotrophs, lik1 mutants showed reduced expression of genes involved in jasmonic acid and ethylene signaling pathways. These data suggest that LIK1 directly interacts with CERK1 and regulates MAMP-triggered innate immunity.
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spelling doaj.art-2024e94a10eb4b0d832a0f506a643afc2022-12-22T01:29:41ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0197e10224510.1371/journal.pone.0102245LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.Mi Ha LeYangrong CaoXue-Cheng ZhangGary StaceyChitin, an integral component of the fungal cell wall, is one of the best-studied microbe-associated molecular patterns. Previous work identified a LysM receptor-like kinase (LysM-RLK1/CERK1) as the primary chitin receptor in Arabidopsis. In order to identify proteins that interact with CERK1, we conducted a yeast two-hybrid screen using the intracellular kinase domain of CERK1 as the bait. This screen identified 54 putative CERK1-interactors. Screening mutants defective in 43 of these interacting proteins identified only two, a calmodulin like protein (At3g10190) and a leucine-rich repeat receptor like kinase (At3g14840), which differed in their response to pathogen challenge. In the present work, we focused on characterizing the LRR-RLK gene where mutations altered responses to chitin elicitation. This LRR-RLK was named LysM RLK1-interacting kinase 1 (LIK1). The interaction between CERK1 and LIK1 was confirmed by co-immunoprecipitation using protoplasts and transgenic plants. In vitro experiments showed that LIK1 was directly phosphorylated by CERK1. In vivo phosphorylation assays showed that Col-0 wild-type plants have more phosphorylated LIK1 than cerk1 mutant plants, suggesting that LIK1 may be directly phosphorylated by CERK1. Lik1 mutant plants showed an enhanced response to both chitin and flagellin elicitors. In comparison to the wild-type plants, lik1 mutant plants were more resistant to the hemibiotrophic pathogen Pseudomonas syringae, but more susceptible to the necrotrophic pathogen Sclerotinia sclerotiorum. Consistent with the enhanced susceptibility to necrotrophs, lik1 mutants showed reduced expression of genes involved in jasmonic acid and ethylene signaling pathways. These data suggest that LIK1 directly interacts with CERK1 and regulates MAMP-triggered innate immunity.http://europepmc.org/articles/PMC4103824?pdf=render
spellingShingle Mi Ha Le
Yangrong Cao
Xue-Cheng Zhang
Gary Stacey
LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.
PLoS ONE
title LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.
title_full LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.
title_fullStr LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.
title_full_unstemmed LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.
title_short LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis.
title_sort lik1 a cerk1 interacting kinase regulates plant immune responses in arabidopsis
url http://europepmc.org/articles/PMC4103824?pdf=render
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AT xuechengzhang lik1acerk1interactingkinaseregulatesplantimmuneresponsesinarabidopsis
AT garystacey lik1acerk1interactingkinaseregulatesplantimmuneresponsesinarabidopsis