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Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance

Plant pathogens with a broad host range are able to infect plant lineages that diverged over 100 million years ago. They exert similar and recurring constraints on the evolution of unrelated plant populations. Plants generally respond with quantitative disease resistance (QDR), a form of immunity re...

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Autores principales: Badet, Thomas, Voisin, Derry, Mbengue, Malick, Barascud, Marielle, Sucher, Justine, Sadon, Pierre, Balagué, Claudine, Roby, Dominique, Raffaele, Sylvain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5757927/
https://www.ncbi.nlm.nih.gov/pubmed/29272270
http://dx.doi.org/10.1371/journal.pgen.1007143
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author Badet, Thomas
Voisin, Derry
Mbengue, Malick
Barascud, Marielle
Sucher, Justine
Sadon, Pierre
Balagué, Claudine
Roby, Dominique
Raffaele, Sylvain
author_facet Badet, Thomas
Voisin, Derry
Mbengue, Malick
Barascud, Marielle
Sucher, Justine
Sadon, Pierre
Balagué, Claudine
Roby, Dominique
Raffaele, Sylvain
author_sort Badet, Thomas
collection PubMed
description Plant pathogens with a broad host range are able to infect plant lineages that diverged over 100 million years ago. They exert similar and recurring constraints on the evolution of unrelated plant populations. Plants generally respond with quantitative disease resistance (QDR), a form of immunity relying on complex genetic determinants. In most cases, the molecular determinants of QDR and how they evolve is unknown. Here we identify in Arabidopsis thaliana a gene mediating QDR against Sclerotinia sclerotiorum, agent of the white mold disease, and provide evidence of its convergent evolution in multiple plant species. Using genome wide association mapping in A. thaliana, we associated the gene encoding the POQR prolyl-oligopeptidase with QDR against S. sclerotiorum. Loss of this gene compromised QDR against S. sclerotiorum but not against a bacterial pathogen. Natural diversity analysis associated POQR sequence with QDR. Remarkably, the same amino acid changes occurred after independent duplications of POQR in ancestors of multiple plant species, including A. thaliana and tomato. Genome-scale expression analyses revealed that parallel divergence in gene expression upon S. sclerotiorum infection is a frequent pattern in genes, such as POQR, that duplicated both in A. thaliana and tomato. Our study identifies a previously uncharacterized gene mediating QDR against S. sclerotiorum. It shows that some QDR determinants are conserved in distantly related plants and have emerged through the repeated use of similar genetic polymorphisms at different evolutionary time scales.
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spelling pubmed-57579272018-01-26 Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance Badet, Thomas Voisin, Derry Mbengue, Malick Barascud, Marielle Sucher, Justine Sadon, Pierre Balagué, Claudine Roby, Dominique Raffaele, Sylvain PLoS Genet Research Article Plant pathogens with a broad host range are able to infect plant lineages that diverged over 100 million years ago. They exert similar and recurring constraints on the evolution of unrelated plant populations. Plants generally respond with quantitative disease resistance (QDR), a form of immunity relying on complex genetic determinants. In most cases, the molecular determinants of QDR and how they evolve is unknown. Here we identify in Arabidopsis thaliana a gene mediating QDR against Sclerotinia sclerotiorum, agent of the white mold disease, and provide evidence of its convergent evolution in multiple plant species. Using genome wide association mapping in A. thaliana, we associated the gene encoding the POQR prolyl-oligopeptidase with QDR against S. sclerotiorum. Loss of this gene compromised QDR against S. sclerotiorum but not against a bacterial pathogen. Natural diversity analysis associated POQR sequence with QDR. Remarkably, the same amino acid changes occurred after independent duplications of POQR in ancestors of multiple plant species, including A. thaliana and tomato. Genome-scale expression analyses revealed that parallel divergence in gene expression upon S. sclerotiorum infection is a frequent pattern in genes, such as POQR, that duplicated both in A. thaliana and tomato. Our study identifies a previously uncharacterized gene mediating QDR against S. sclerotiorum. It shows that some QDR determinants are conserved in distantly related plants and have emerged through the repeated use of similar genetic polymorphisms at different evolutionary time scales. Public Library of Science 2017-12-22 /pmc/articles/PMC5757927/ /pubmed/29272270 http://dx.doi.org/10.1371/journal.pgen.1007143 Text en © 2017 Badet et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://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
Badet, Thomas
Voisin, Derry
Mbengue, Malick
Barascud, Marielle
Sucher, Justine
Sadon, Pierre
Balagué, Claudine
Roby, Dominique
Raffaele, Sylvain
Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance
title Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance
title_full Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance
title_fullStr Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance
title_full_unstemmed Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance
title_short Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance
title_sort parallel evolution of the poqr prolyl oligo peptidase gene conferring plant quantitative disease resistance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5757927/
https://www.ncbi.nlm.nih.gov/pubmed/29272270
http://dx.doi.org/10.1371/journal.pgen.1007143
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