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Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes

Potato is the world's fourth largest food crop yet it continues to endure late blight, a devastating disease caused by the Irish famine pathogen Phytophthora infestans. Breeding broad-spectrum disease resistance (R) genes into potato (Solanum tuberosum) is the best strategy for genetically mana...

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Autores principales: Vleeshouwers, Vivianne G. A. A., Rietman, Hendrik, Krenek, Pavel, Champouret, Nicolas, Young, Carolyn, Oh, Sang-Keun, Wang, Miqia, Bouwmeester, Klaas, Vosman, Ben, Visser, Richard G. F., Jacobsen, Evert, Govers, Francine, Kamoun, Sophien, Van der Vossen, Edwin A. G.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2483939/
https://www.ncbi.nlm.nih.gov/pubmed/18682852
http://dx.doi.org/10.1371/journal.pone.0002875
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author Vleeshouwers, Vivianne G. A. A.
Rietman, Hendrik
Krenek, Pavel
Champouret, Nicolas
Young, Carolyn
Oh, Sang-Keun
Wang, Miqia
Bouwmeester, Klaas
Vosman, Ben
Visser, Richard G. F.
Jacobsen, Evert
Govers, Francine
Kamoun, Sophien
Van der Vossen, Edwin A. G.
author_facet Vleeshouwers, Vivianne G. A. A.
Rietman, Hendrik
Krenek, Pavel
Champouret, Nicolas
Young, Carolyn
Oh, Sang-Keun
Wang, Miqia
Bouwmeester, Klaas
Vosman, Ben
Visser, Richard G. F.
Jacobsen, Evert
Govers, Francine
Kamoun, Sophien
Van der Vossen, Edwin A. G.
author_sort Vleeshouwers, Vivianne G. A. A.
collection PubMed
description Potato is the world's fourth largest food crop yet it continues to endure late blight, a devastating disease caused by the Irish famine pathogen Phytophthora infestans. Breeding broad-spectrum disease resistance (R) genes into potato (Solanum tuberosum) is the best strategy for genetically managing late blight but current approaches are slow and inefficient. We used a repertoire of effector genes predicted computationally from the P. infestans genome to accelerate the identification, functional characterization, and cloning of potentially broad-spectrum R genes. An initial set of 54 effectors containing a signal peptide and a RXLR motif was profiled for activation of innate immunity (avirulence or Avr activity) on wild Solanum species and tentative Avr candidates were identified. The RXLR effector family IpiO induced hypersensitive responses (HR) in S. stoloniferum, S. papita and the more distantly related S. bulbocastanum, the source of the R gene Rpi-blb1. Genetic studies with S. stoloniferum showed cosegregation of resistance to P. infestans and response to IpiO. Transient co-expression of IpiO with Rpi-blb1 in a heterologous Nicotiana benthamiana system identified IpiO as Avr-blb1. A candidate gene approach led to the rapid cloning of S. stoloniferum Rpi-sto1 and S. papita Rpi-pta1, which are functionally equivalent to Rpi-blb1. Our findings indicate that effector genomics enables discovery and functional profiling of late blight R genes and Avr genes at an unprecedented rate and promises to accelerate the engineering of late blight resistant potato varieties.
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spelling pubmed-24839392008-08-06 Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes Vleeshouwers, Vivianne G. A. A. Rietman, Hendrik Krenek, Pavel Champouret, Nicolas Young, Carolyn Oh, Sang-Keun Wang, Miqia Bouwmeester, Klaas Vosman, Ben Visser, Richard G. F. Jacobsen, Evert Govers, Francine Kamoun, Sophien Van der Vossen, Edwin A. G. PLoS One Research Article Potato is the world's fourth largest food crop yet it continues to endure late blight, a devastating disease caused by the Irish famine pathogen Phytophthora infestans. Breeding broad-spectrum disease resistance (R) genes into potato (Solanum tuberosum) is the best strategy for genetically managing late blight but current approaches are slow and inefficient. We used a repertoire of effector genes predicted computationally from the P. infestans genome to accelerate the identification, functional characterization, and cloning of potentially broad-spectrum R genes. An initial set of 54 effectors containing a signal peptide and a RXLR motif was profiled for activation of innate immunity (avirulence or Avr activity) on wild Solanum species and tentative Avr candidates were identified. The RXLR effector family IpiO induced hypersensitive responses (HR) in S. stoloniferum, S. papita and the more distantly related S. bulbocastanum, the source of the R gene Rpi-blb1. Genetic studies with S. stoloniferum showed cosegregation of resistance to P. infestans and response to IpiO. Transient co-expression of IpiO with Rpi-blb1 in a heterologous Nicotiana benthamiana system identified IpiO as Avr-blb1. A candidate gene approach led to the rapid cloning of S. stoloniferum Rpi-sto1 and S. papita Rpi-pta1, which are functionally equivalent to Rpi-blb1. Our findings indicate that effector genomics enables discovery and functional profiling of late blight R genes and Avr genes at an unprecedented rate and promises to accelerate the engineering of late blight resistant potato varieties. Public Library of Science 2008-08-06 /pmc/articles/PMC2483939/ /pubmed/18682852 http://dx.doi.org/10.1371/journal.pone.0002875 Text en Vleeshouwers 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
Vleeshouwers, Vivianne G. A. A.
Rietman, Hendrik
Krenek, Pavel
Champouret, Nicolas
Young, Carolyn
Oh, Sang-Keun
Wang, Miqia
Bouwmeester, Klaas
Vosman, Ben
Visser, Richard G. F.
Jacobsen, Evert
Govers, Francine
Kamoun, Sophien
Van der Vossen, Edwin A. G.
Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes
title Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes
title_full Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes
title_fullStr Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes
title_full_unstemmed Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes
title_short Effector Genomics Accelerates Discovery and Functional Profiling of Potato Disease Resistance and Phytophthora Infestans Avirulence Genes
title_sort effector genomics accelerates discovery and functional profiling of potato disease resistance and phytophthora infestans avirulence genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2483939/
https://www.ncbi.nlm.nih.gov/pubmed/18682852
http://dx.doi.org/10.1371/journal.pone.0002875
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