The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity

Plants deploy numerous receptor-like kinases (RLKs) to respond to pathogens. Here the authors show that NIK1, an RLK that positively regulates antiviral immunity, negatively regulates the response to bacteria by modulating FLS2/BAK1 complex formation, suggesting crosstalk between bacterial and viral...

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Main Authors: Bo Li, Marco Aurélio Ferreira, Mengling Huang, Luiz Fernando Camargos, Xiao Yu, Ruan M. Teixeira, Paola A. Carpinetti, Giselle C. Mendes, Bianca C. Gouveia-Mageste, Chenglong Liu, Claudia S. L. Pontes, Otávio J. B. Brustolini, Laura G. C. Martins, Bruno P. Melo, Christiane E. M. Duarte, Libo Shan, Ping He, Elizabeth P. B. Fontes
Format: Article
Language:English
Published: Nature Publishing Group 2019-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-019-12847-6
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spelling doaj-27378fe09b2c4f2092bf1d35f2cf37f02021-05-11T11:49:04ZengNature Publishing GroupNature Communications2041-17232019-11-0110111410.1038/s41467-019-12847-6The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunityBo Li0Marco Aurélio Ferreira1Mengling Huang2Luiz Fernando Camargos3Xiao Yu4Ruan M. Teixeira5Paola A. Carpinetti6Giselle C. Mendes7Bianca C. Gouveia-Mageste8Chenglong Liu9Claudia S. L. Pontes10Otávio J. B. Brustolini11Laura G. C. Martins12Bruno P. Melo13Christiane E. M. Duarte14Libo Shan15Ping He16Elizabeth P. B. Fontes17State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural UniversityNational Institute of Science and Technology in Plant–Pest Interactions, BioagroState Key Laboratory of Agricultural Microbiology, Huazhong Agricultural UniversityNational Institute of Science and Technology in Plant–Pest Interactions, BioagroDepartment of Plant Pathology and Microbiology, Institute for Plant Genomics and Biotechnology, Texas A&M UniversityNational Institute of Science and Technology in Plant–Pest Interactions, BioagroDepartment of Biochemistry and Molecular Biology, Universidade Federal de ViçosaNational Institute of Science and Technology in Plant–Pest Interactions, BioagroNational Institute of Science and Technology in Plant–Pest Interactions, BioagroDepartment of Plant Pathology and Microbiology, Institute for Plant Genomics and Biotechnology, Texas A&M UniversityNational Institute of Science and Technology in Plant–Pest Interactions, BioagroNational Institute of Science and Technology in Plant–Pest Interactions, BioagroNational Institute of Science and Technology in Plant–Pest Interactions, BioagroNational Institute of Science and Technology in Plant–Pest Interactions, BioagroNational Institute of Science and Technology in Plant–Pest Interactions, BioagroDepartment of Plant Pathology and Microbiology, Institute for Plant Genomics and Biotechnology, Texas A&M UniversityDepartment of Biochemistry and Biophysics, Institute for Plant Genomics and Biotechnology, Texas A&M UniversityNational Institute of Science and Technology in Plant–Pest Interactions, BioagroPlants deploy numerous receptor-like kinases (RLKs) to respond to pathogens. Here the authors show that NIK1, an RLK that positively regulates antiviral immunity, negatively regulates the response to bacteria by modulating FLS2/BAK1 complex formation, suggesting crosstalk between bacterial and viral immunity.https://doi.org/10.1038/s41467-019-12847-6
collection DOAJ
language English
format Article
sources DOAJ
author Bo Li
Marco Aurélio Ferreira
Mengling Huang
Luiz Fernando Camargos
Xiao Yu
Ruan M. Teixeira
Paola A. Carpinetti
Giselle C. Mendes
Bianca C. Gouveia-Mageste
Chenglong Liu
Claudia S. L. Pontes
Otávio J. B. Brustolini
Laura G. C. Martins
Bruno P. Melo
Christiane E. M. Duarte
Libo Shan
Ping He
Elizabeth P. B. Fontes
spellingShingle Bo Li
Marco Aurélio Ferreira
Mengling Huang
Luiz Fernando Camargos
Xiao Yu
Ruan M. Teixeira
Paola A. Carpinetti
Giselle C. Mendes
Bianca C. Gouveia-Mageste
Chenglong Liu
Claudia S. L. Pontes
Otávio J. B. Brustolini
Laura G. C. Martins
Bruno P. Melo
Christiane E. M. Duarte
Libo Shan
Ping He
Elizabeth P. B. Fontes
The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity
Nature Communications
author_facet Bo Li
Marco Aurélio Ferreira
Mengling Huang
Luiz Fernando Camargos
Xiao Yu
Ruan M. Teixeira
Paola A. Carpinetti
Giselle C. Mendes
Bianca C. Gouveia-Mageste
Chenglong Liu
Claudia S. L. Pontes
Otávio J. B. Brustolini
Laura G. C. Martins
Bruno P. Melo
Christiane E. M. Duarte
Libo Shan
Ping He
Elizabeth P. B. Fontes
author_sort Bo Li
title The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity
title_short The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity
title_full The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity
title_fullStr The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity
title_full_unstemmed The receptor-like kinase NIK1 targets FLS2/BAK1 immune complex and inversely modulates antiviral and antibacterial immunity
title_sort receptor-like kinase nik1 targets fls2/bak1 immune complex and inversely modulates antiviral and antibacterial immunity
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2019-11-01
description Plants deploy numerous receptor-like kinases (RLKs) to respond to pathogens. Here the authors show that NIK1, an RLK that positively regulates antiviral immunity, negatively regulates the response to bacteria by modulating FLS2/BAK1 complex formation, suggesting crosstalk between bacterial and viral immunity.
url https://doi.org/10.1038/s41467-019-12847-6
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