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The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat

The wheat Pm3 resistance gene against the powdery mildew pathogen occurs as an allelic series encoding functionally different immune receptors which induce resistance upon recognition of isolate-specific avirulence (AVR) effectors from the pathogen. Here, we describe the identification of five effec...

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Autores principales: Bourras, Salim, Kunz, Lukas, Xue, Minfeng, Praz, Coraline Rosalie, Müller, Marion Claudia, Kälin, Carol, Schläfli, Michael, Ackermann, Patrick, Flückiger, Simon, Parlange, Francis, Menardo, Fabrizio, Schaefer, Luisa Katharina, Ben-David, Roi, Roffler, Stefan, Oberhaensli, Simone, Widrig, Victoria, Lindner, Stefan, Isaksson, Jonatan, Wicker, Thomas, Yu, Dazhao, Keller, Beat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6533294/
https://www.ncbi.nlm.nih.gov/pubmed/31123263
http://dx.doi.org/10.1038/s41467-019-10274-1
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author Bourras, Salim
Kunz, Lukas
Xue, Minfeng
Praz, Coraline Rosalie
Müller, Marion Claudia
Kälin, Carol
Schläfli, Michael
Ackermann, Patrick
Flückiger, Simon
Parlange, Francis
Menardo, Fabrizio
Schaefer, Luisa Katharina
Ben-David, Roi
Roffler, Stefan
Oberhaensli, Simone
Widrig, Victoria
Lindner, Stefan
Isaksson, Jonatan
Wicker, Thomas
Yu, Dazhao
Keller, Beat
author_facet Bourras, Salim
Kunz, Lukas
Xue, Minfeng
Praz, Coraline Rosalie
Müller, Marion Claudia
Kälin, Carol
Schläfli, Michael
Ackermann, Patrick
Flückiger, Simon
Parlange, Francis
Menardo, Fabrizio
Schaefer, Luisa Katharina
Ben-David, Roi
Roffler, Stefan
Oberhaensli, Simone
Widrig, Victoria
Lindner, Stefan
Isaksson, Jonatan
Wicker, Thomas
Yu, Dazhao
Keller, Beat
author_sort Bourras, Salim
collection PubMed
description The wheat Pm3 resistance gene against the powdery mildew pathogen occurs as an allelic series encoding functionally different immune receptors which induce resistance upon recognition of isolate-specific avirulence (AVR) effectors from the pathogen. Here, we describe the identification of five effector proteins from the mildew pathogens of wheat, rye, and the wild grass Dactylis glomerata, specifically recognized by the PM3B, PM3C and PM3D receptors. Together with the earlier identified AVRPM3(A2/F2), the recognized AVRs of PM3B/C, (AVRPM3(B2/C2)), and PM3D (AVRPM3(D3)) belong to a large group of proteins with low sequence homology but predicted structural similarities. AvrPm3(b2/c2) and AvrPm3(d3) are conserved in all tested isolates of wheat and rye mildew, and non-host infection assays demonstrate that Pm3b, Pm3c, and Pm3d are also restricting the growth of rye mildew on wheat. Furthermore, divergent AVR homologues from non-adapted rye and Dactylis mildews are recognized by PM3B, PM3C, or PM3D, demonstrating their involvement in host specificity.
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spelling pubmed-65332942019-05-28 The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat Bourras, Salim Kunz, Lukas Xue, Minfeng Praz, Coraline Rosalie Müller, Marion Claudia Kälin, Carol Schläfli, Michael Ackermann, Patrick Flückiger, Simon Parlange, Francis Menardo, Fabrizio Schaefer, Luisa Katharina Ben-David, Roi Roffler, Stefan Oberhaensli, Simone Widrig, Victoria Lindner, Stefan Isaksson, Jonatan Wicker, Thomas Yu, Dazhao Keller, Beat Nat Commun Article The wheat Pm3 resistance gene against the powdery mildew pathogen occurs as an allelic series encoding functionally different immune receptors which induce resistance upon recognition of isolate-specific avirulence (AVR) effectors from the pathogen. Here, we describe the identification of five effector proteins from the mildew pathogens of wheat, rye, and the wild grass Dactylis glomerata, specifically recognized by the PM3B, PM3C and PM3D receptors. Together with the earlier identified AVRPM3(A2/F2), the recognized AVRs of PM3B/C, (AVRPM3(B2/C2)), and PM3D (AVRPM3(D3)) belong to a large group of proteins with low sequence homology but predicted structural similarities. AvrPm3(b2/c2) and AvrPm3(d3) are conserved in all tested isolates of wheat and rye mildew, and non-host infection assays demonstrate that Pm3b, Pm3c, and Pm3d are also restricting the growth of rye mildew on wheat. Furthermore, divergent AVR homologues from non-adapted rye and Dactylis mildews are recognized by PM3B, PM3C, or PM3D, demonstrating their involvement in host specificity. Nature Publishing Group UK 2019-05-23 /pmc/articles/PMC6533294/ /pubmed/31123263 http://dx.doi.org/10.1038/s41467-019-10274-1 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Bourras, Salim
Kunz, Lukas
Xue, Minfeng
Praz, Coraline Rosalie
Müller, Marion Claudia
Kälin, Carol
Schläfli, Michael
Ackermann, Patrick
Flückiger, Simon
Parlange, Francis
Menardo, Fabrizio
Schaefer, Luisa Katharina
Ben-David, Roi
Roffler, Stefan
Oberhaensli, Simone
Widrig, Victoria
Lindner, Stefan
Isaksson, Jonatan
Wicker, Thomas
Yu, Dazhao
Keller, Beat
The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
title The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
title_full The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
title_fullStr The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
title_full_unstemmed The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
title_short The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
title_sort avrpm3-pm3 effector-nlr interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6533294/
https://www.ncbi.nlm.nih.gov/pubmed/31123263
http://dx.doi.org/10.1038/s41467-019-10274-1
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