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The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes

BACKGROUND: The non conventional RTM (Restricted Tobacco etch virus Movement) resistance which restricts long distance movement of some plant viruses in Arabidopsis thaliana is still poorly understood. Though at least three RTM genes have been identified, their precise role(s) in the process as well...

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Autores principales: Cosson, Patrick, Schurdi-Levraud, Valérie, Le, Quang Hien, Sicard, Ophélie, Caballero, Mélodie, Roux, Fabrice, Le Gall, Olivier, Candresse, Thierry, Revers, Frédéric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377653/
https://www.ncbi.nlm.nih.gov/pubmed/22723957
http://dx.doi.org/10.1371/journal.pone.0039169
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author Cosson, Patrick
Schurdi-Levraud, Valérie
Le, Quang Hien
Sicard, Ophélie
Caballero, Mélodie
Roux, Fabrice
Le Gall, Olivier
Candresse, Thierry
Revers, Frédéric
author_facet Cosson, Patrick
Schurdi-Levraud, Valérie
Le, Quang Hien
Sicard, Ophélie
Caballero, Mélodie
Roux, Fabrice
Le Gall, Olivier
Candresse, Thierry
Revers, Frédéric
author_sort Cosson, Patrick
collection PubMed
description BACKGROUND: The non conventional RTM (Restricted Tobacco etch virus Movement) resistance which restricts long distance movement of some plant viruses in Arabidopsis thaliana is still poorly understood. Though at least three RTM genes have been identified, their precise role(s) in the process as well as whether other genes are involved needs to be elucidated. METHODOLOGY/PRINCIPAL FINDINGS: In this study, the natural variation of the RTM genes was analysed at the amino acid level in relation with their functionality to restrict the long distance movement of Lettuce mosaic potyvirus (LMV). We identified non-functional RTM alleles in LMV-susceptible Arabidopsis accessions as well as some of the mutations leading to the non-functionality of the RTM proteins. Our data also indicate that more than 40% of the resistant accessions to LMV are controlled by the RTM genes. In addition, two new RTM loci were genetically identified. CONCLUSIONS/SIGNIFICANCE: Our results show that the RTM resistance seems to be a complex biological process which would involves at least five different proteins. The next challenges will be to understand how the different RTM protein domains are involved in the resistance mechanism and to characterise the new RTM genes for a better understanding of the blocking of the long distance transport of plant viruses.
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spelling pubmed-33776532012-06-21 The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes Cosson, Patrick Schurdi-Levraud, Valérie Le, Quang Hien Sicard, Ophélie Caballero, Mélodie Roux, Fabrice Le Gall, Olivier Candresse, Thierry Revers, Frédéric PLoS One Research Article BACKGROUND: The non conventional RTM (Restricted Tobacco etch virus Movement) resistance which restricts long distance movement of some plant viruses in Arabidopsis thaliana is still poorly understood. Though at least three RTM genes have been identified, their precise role(s) in the process as well as whether other genes are involved needs to be elucidated. METHODOLOGY/PRINCIPAL FINDINGS: In this study, the natural variation of the RTM genes was analysed at the amino acid level in relation with their functionality to restrict the long distance movement of Lettuce mosaic potyvirus (LMV). We identified non-functional RTM alleles in LMV-susceptible Arabidopsis accessions as well as some of the mutations leading to the non-functionality of the RTM proteins. Our data also indicate that more than 40% of the resistant accessions to LMV are controlled by the RTM genes. In addition, two new RTM loci were genetically identified. CONCLUSIONS/SIGNIFICANCE: Our results show that the RTM resistance seems to be a complex biological process which would involves at least five different proteins. The next challenges will be to understand how the different RTM protein domains are involved in the resistance mechanism and to characterise the new RTM genes for a better understanding of the blocking of the long distance transport of plant viruses. Public Library of Science 2012-06-18 /pmc/articles/PMC3377653/ /pubmed/22723957 http://dx.doi.org/10.1371/journal.pone.0039169 Text en Cosson 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Cosson, Patrick
Schurdi-Levraud, Valérie
Le, Quang Hien
Sicard, Ophélie
Caballero, Mélodie
Roux, Fabrice
Le Gall, Olivier
Candresse, Thierry
Revers, Frédéric
The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes
title The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes
title_full The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes
title_fullStr The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes
title_full_unstemmed The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes
title_short The RTM Resistance to Potyviruses in Arabidopsis thaliana: Natural Variation of the RTM Genes and Evidence for the Implication of Additional Genes
title_sort rtm resistance to potyviruses in arabidopsis thaliana: natural variation of the rtm genes and evidence for the implication of additional genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377653/
https://www.ncbi.nlm.nih.gov/pubmed/22723957
http://dx.doi.org/10.1371/journal.pone.0039169
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