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Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network

In plants, nucleotide-binding domain and leucine-rich repeat (NLR)-containing proteins can form receptor networks to confer hypersensitive cell death and innate immunity. One class of NLRs, known as NLR required for cell death (NRCs), are central nodes in a complex network that protects against mult...

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Autores principales: Derevnina, Lida, Contreras, Mauricio P., Adachi, Hiroaki, Upson, Jessica, Vergara Cruces, Angel, Xie, Rongrong, Skłenar, Jan, Menke, Frank L. H., Mugford, Sam T., MacLean, Dan, Ma, Wenbo, Hogenhout, Saskia A., Goverse, Aska, Maqbool, Abbas, Wu, Chih-Hang, Kamoun, Sophien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8412950/
https://www.ncbi.nlm.nih.gov/pubmed/34424903
http://dx.doi.org/10.1371/journal.pbio.3001136
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author Derevnina, Lida
Contreras, Mauricio P.
Adachi, Hiroaki
Upson, Jessica
Vergara Cruces, Angel
Xie, Rongrong
Skłenar, Jan
Menke, Frank L. H.
Mugford, Sam T.
MacLean, Dan
Ma, Wenbo
Hogenhout, Saskia A.
Goverse, Aska
Maqbool, Abbas
Wu, Chih-Hang
Kamoun, Sophien
author_facet Derevnina, Lida
Contreras, Mauricio P.
Adachi, Hiroaki
Upson, Jessica
Vergara Cruces, Angel
Xie, Rongrong
Skłenar, Jan
Menke, Frank L. H.
Mugford, Sam T.
MacLean, Dan
Ma, Wenbo
Hogenhout, Saskia A.
Goverse, Aska
Maqbool, Abbas
Wu, Chih-Hang
Kamoun, Sophien
author_sort Derevnina, Lida
collection PubMed
description In plants, nucleotide-binding domain and leucine-rich repeat (NLR)-containing proteins can form receptor networks to confer hypersensitive cell death and innate immunity. One class of NLRs, known as NLR required for cell death (NRCs), are central nodes in a complex network that protects against multiple pathogens and comprises up to half of the NLRome of solanaceous plants. Given the prevalence of this NLR network, we hypothesised that pathogens convergently evolved to secrete effectors that target NRC activities. To test this, we screened a library of 165 bacterial, oomycete, nematode, and aphid effectors for their capacity to suppress the cell death response triggered by the NRC-dependent disease resistance proteins Prf and Rpi-blb2. Among 5 of the identified suppressors, 1 cyst nematode protein and 1 oomycete protein suppress the activity of autoimmune mutants of NRC2 and NRC3, but not NRC4, indicating that they specifically counteract a subset of NRC proteins independently of their sensor NLR partners. Whereas the cyst nematode effector SPRYSEC15 binds the nucleotide-binding domain of NRC2 and NRC3, the oomycete effector AVRcap1b suppresses the response of these NRCs via the membrane trafficking-associated protein NbTOL9a (Target of Myb 1-like protein 9a). We conclude that plant pathogens have evolved to counteract central nodes of the NRC immune receptor network through different mechanisms. Coevolution with pathogen effectors may have driven NRC diversification into functionally redundant nodes in a massively expanded NLR network.
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spelling pubmed-84129502021-09-03 Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network Derevnina, Lida Contreras, Mauricio P. Adachi, Hiroaki Upson, Jessica Vergara Cruces, Angel Xie, Rongrong Skłenar, Jan Menke, Frank L. H. Mugford, Sam T. MacLean, Dan Ma, Wenbo Hogenhout, Saskia A. Goverse, Aska Maqbool, Abbas Wu, Chih-Hang Kamoun, Sophien PLoS Biol Research Article In plants, nucleotide-binding domain and leucine-rich repeat (NLR)-containing proteins can form receptor networks to confer hypersensitive cell death and innate immunity. One class of NLRs, known as NLR required for cell death (NRCs), are central nodes in a complex network that protects against multiple pathogens and comprises up to half of the NLRome of solanaceous plants. Given the prevalence of this NLR network, we hypothesised that pathogens convergently evolved to secrete effectors that target NRC activities. To test this, we screened a library of 165 bacterial, oomycete, nematode, and aphid effectors for their capacity to suppress the cell death response triggered by the NRC-dependent disease resistance proteins Prf and Rpi-blb2. Among 5 of the identified suppressors, 1 cyst nematode protein and 1 oomycete protein suppress the activity of autoimmune mutants of NRC2 and NRC3, but not NRC4, indicating that they specifically counteract a subset of NRC proteins independently of their sensor NLR partners. Whereas the cyst nematode effector SPRYSEC15 binds the nucleotide-binding domain of NRC2 and NRC3, the oomycete effector AVRcap1b suppresses the response of these NRCs via the membrane trafficking-associated protein NbTOL9a (Target of Myb 1-like protein 9a). We conclude that plant pathogens have evolved to counteract central nodes of the NRC immune receptor network through different mechanisms. Coevolution with pathogen effectors may have driven NRC diversification into functionally redundant nodes in a massively expanded NLR network. Public Library of Science 2021-08-23 /pmc/articles/PMC8412950/ /pubmed/34424903 http://dx.doi.org/10.1371/journal.pbio.3001136 Text en © 2021 Derevnina et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Derevnina, Lida
Contreras, Mauricio P.
Adachi, Hiroaki
Upson, Jessica
Vergara Cruces, Angel
Xie, Rongrong
Skłenar, Jan
Menke, Frank L. H.
Mugford, Sam T.
MacLean, Dan
Ma, Wenbo
Hogenhout, Saskia A.
Goverse, Aska
Maqbool, Abbas
Wu, Chih-Hang
Kamoun, Sophien
Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network
title Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network
title_full Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network
title_fullStr Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network
title_full_unstemmed Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network
title_short Plant pathogens convergently evolved to counteract redundant nodes of an NLR immune receptor network
title_sort plant pathogens convergently evolved to counteract redundant nodes of an nlr immune receptor network
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8412950/
https://www.ncbi.nlm.nih.gov/pubmed/34424903
http://dx.doi.org/10.1371/journal.pbio.3001136
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