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The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors

The oomycete Albugo candida causes white blister rust, an important disease of Brassica crops. Distinct races of A. candida are defined by their capacity to infect different host plant species. Each A. candida race encodes secreted proteins with a CX(2)CX(5)G (‘CCG’) motif that are polymorphic and s...

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Autores principales: Redkar, Amey, Cevik, Volkan, Bailey, Kate, Zhao, He, Kim, Dae Sung, Zou, Zhou, Furzer, Oliver J., Fairhead, Sebastian, Borhan, M. Hossein, Holub, Eric B., Jones, Jonathan D. G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10087428/
https://www.ncbi.nlm.nih.gov/pubmed/35838065
http://dx.doi.org/10.1111/nph.18378
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author Redkar, Amey
Cevik, Volkan
Bailey, Kate
Zhao, He
Kim, Dae Sung
Zou, Zhou
Furzer, Oliver J.
Fairhead, Sebastian
Borhan, M. Hossein
Holub, Eric B.
Jones, Jonathan D. G.
author_facet Redkar, Amey
Cevik, Volkan
Bailey, Kate
Zhao, He
Kim, Dae Sung
Zou, Zhou
Furzer, Oliver J.
Fairhead, Sebastian
Borhan, M. Hossein
Holub, Eric B.
Jones, Jonathan D. G.
author_sort Redkar, Amey
collection PubMed
description The oomycete Albugo candida causes white blister rust, an important disease of Brassica crops. Distinct races of A. candida are defined by their capacity to infect different host plant species. Each A. candida race encodes secreted proteins with a CX(2)CX(5)G (‘CCG’) motif that are polymorphic and show presence/absence variation, and are therefore candidate effectors. The White Rust Resistance 4 (WRR4) locus in Arabidopsis thaliana accession Col‐0 contains three genes that encode intracellular nucleotide‐binding domain leucine‐rich repeat immune receptors. The Col‐0 alleles of WRR4A and WRR4B confer resistance to multiple A. candida races, although both WRR4A and WRR4B can be overcome by the Col‐0‐virulent race 4 isolate AcEx1. Comparison of CCG candidate effectors in avirulent and virulent races, and transient co‐expression of CCG effectors from four A. candida races in Nicotiana sp. or A. thaliana, revealed CCG effectors that trigger WRR4A‐ or WRR4B‐dependent hypersensitive responses. We found eight WRR4A‐recognised CCGs and four WRR4B‐recognised CCGs, the first recognised proteins from A. candida for which the cognate immune receptors in A. thaliana are known. This multiple recognition capacity potentially explains the broad‐spectrum resistance to several A. candida races conferred by WRR4 paralogues. We further show that of five tested CCGs, three confer enhanced disease susceptibility when expressed in planta, consistent with A. candida CCG proteins being effectors.
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spelling pubmed-100874282023-04-12 The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors Redkar, Amey Cevik, Volkan Bailey, Kate Zhao, He Kim, Dae Sung Zou, Zhou Furzer, Oliver J. Fairhead, Sebastian Borhan, M. Hossein Holub, Eric B. Jones, Jonathan D. G. New Phytol Research The oomycete Albugo candida causes white blister rust, an important disease of Brassica crops. Distinct races of A. candida are defined by their capacity to infect different host plant species. Each A. candida race encodes secreted proteins with a CX(2)CX(5)G (‘CCG’) motif that are polymorphic and show presence/absence variation, and are therefore candidate effectors. The White Rust Resistance 4 (WRR4) locus in Arabidopsis thaliana accession Col‐0 contains three genes that encode intracellular nucleotide‐binding domain leucine‐rich repeat immune receptors. The Col‐0 alleles of WRR4A and WRR4B confer resistance to multiple A. candida races, although both WRR4A and WRR4B can be overcome by the Col‐0‐virulent race 4 isolate AcEx1. Comparison of CCG candidate effectors in avirulent and virulent races, and transient co‐expression of CCG effectors from four A. candida races in Nicotiana sp. or A. thaliana, revealed CCG effectors that trigger WRR4A‐ or WRR4B‐dependent hypersensitive responses. We found eight WRR4A‐recognised CCGs and four WRR4B‐recognised CCGs, the first recognised proteins from A. candida for which the cognate immune receptors in A. thaliana are known. This multiple recognition capacity potentially explains the broad‐spectrum resistance to several A. candida races conferred by WRR4 paralogues. We further show that of five tested CCGs, three confer enhanced disease susceptibility when expressed in planta, consistent with A. candida CCG proteins being effectors. John Wiley and Sons Inc. 2022-08-07 2023-01 /pmc/articles/PMC10087428/ /pubmed/35838065 http://dx.doi.org/10.1111/nph.18378 Text en © 2022 The Authors New Phytologist © 2022 New Phytologist Foundation. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://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
Redkar, Amey
Cevik, Volkan
Bailey, Kate
Zhao, He
Kim, Dae Sung
Zou, Zhou
Furzer, Oliver J.
Fairhead, Sebastian
Borhan, M. Hossein
Holub, Eric B.
Jones, Jonathan D. G.
The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
title The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
title_full The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
title_fullStr The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
title_full_unstemmed The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
title_short The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
title_sort arabidopsis wrr4a and wrr4b paralogous nlr proteins both confer recognition of multiple albugo candida effectors
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10087428/
https://www.ncbi.nlm.nih.gov/pubmed/35838065
http://dx.doi.org/10.1111/nph.18378
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