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The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida

Although the use of natural resistance is the most effective management approach against the potato cyst nematode (PCN) Globodera pallida, the existence of pathotypes with different virulence characteristics constitutes a constraint towards this goal. Two resistance sources, GpaV (from Solanum verne...

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Autores principales: Varypatakis, Kyriakos, Véronneau, Pierre-Yves, Thorpe, Peter, Cock, Peter J. A., Lim, Joanne Tze-Yin, Armstrong, Miles R., Janakowski, Sławomir, Sobczak, Mirosław, Hein, Ingo, Mimee, Benjamin, Jones, John T., Blok, Vivian C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760817/
https://www.ncbi.nlm.nih.gov/pubmed/33260722
http://dx.doi.org/10.3390/genes11121429
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author Varypatakis, Kyriakos
Véronneau, Pierre-Yves
Thorpe, Peter
Cock, Peter J. A.
Lim, Joanne Tze-Yin
Armstrong, Miles R.
Janakowski, Sławomir
Sobczak, Mirosław
Hein, Ingo
Mimee, Benjamin
Jones, John T.
Blok, Vivian C.
author_facet Varypatakis, Kyriakos
Véronneau, Pierre-Yves
Thorpe, Peter
Cock, Peter J. A.
Lim, Joanne Tze-Yin
Armstrong, Miles R.
Janakowski, Sławomir
Sobczak, Mirosław
Hein, Ingo
Mimee, Benjamin
Jones, John T.
Blok, Vivian C.
author_sort Varypatakis, Kyriakos
collection PubMed
description Although the use of natural resistance is the most effective management approach against the potato cyst nematode (PCN) Globodera pallida, the existence of pathotypes with different virulence characteristics constitutes a constraint towards this goal. Two resistance sources, GpaV (from Solanum vernei) and H3 from S. tuberosum ssp. andigena CPC2802 (from the Commonwealth Potato Collection) are widely used in potato breeding programmes in European potato industry. However, the use of resistant cultivars may drive strong selection towards virulence, which allows the increase in frequency of virulent alleles in the population and therefore, the emergence of highly virulent nematode lineages. This study aimed to identify Avirulence (Avr) genes in G. pallida populations selected for virulence on the above resistance sources, and the genomic impact of selection processes on the nematode. The selection drive in the populations was found to be specific to their genetic background. At the genomic level, 11 genes were found that represent candidate Avr genes. Most of the variant calls determining selection were associated with H3-selected populations, while many of them seem to be organised in genomic islands facilitating selection evolution. These phenotypic and genomic findings combined with histological studies performed revealed potential mechanisms underlying selection in G. pallida.
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spelling pubmed-77608172020-12-26 The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida Varypatakis, Kyriakos Véronneau, Pierre-Yves Thorpe, Peter Cock, Peter J. A. Lim, Joanne Tze-Yin Armstrong, Miles R. Janakowski, Sławomir Sobczak, Mirosław Hein, Ingo Mimee, Benjamin Jones, John T. Blok, Vivian C. Genes (Basel) Article Although the use of natural resistance is the most effective management approach against the potato cyst nematode (PCN) Globodera pallida, the existence of pathotypes with different virulence characteristics constitutes a constraint towards this goal. Two resistance sources, GpaV (from Solanum vernei) and H3 from S. tuberosum ssp. andigena CPC2802 (from the Commonwealth Potato Collection) are widely used in potato breeding programmes in European potato industry. However, the use of resistant cultivars may drive strong selection towards virulence, which allows the increase in frequency of virulent alleles in the population and therefore, the emergence of highly virulent nematode lineages. This study aimed to identify Avirulence (Avr) genes in G. pallida populations selected for virulence on the above resistance sources, and the genomic impact of selection processes on the nematode. The selection drive in the populations was found to be specific to their genetic background. At the genomic level, 11 genes were found that represent candidate Avr genes. Most of the variant calls determining selection were associated with H3-selected populations, while many of them seem to be organised in genomic islands facilitating selection evolution. These phenotypic and genomic findings combined with histological studies performed revealed potential mechanisms underlying selection in G. pallida. MDPI 2020-11-28 /pmc/articles/PMC7760817/ /pubmed/33260722 http://dx.doi.org/10.3390/genes11121429 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Varypatakis, Kyriakos
Véronneau, Pierre-Yves
Thorpe, Peter
Cock, Peter J. A.
Lim, Joanne Tze-Yin
Armstrong, Miles R.
Janakowski, Sławomir
Sobczak, Mirosław
Hein, Ingo
Mimee, Benjamin
Jones, John T.
Blok, Vivian C.
The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida
title The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida
title_full The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida
title_fullStr The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida
title_full_unstemmed The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida
title_short The Genomic Impact of Selection for Virulence against Resistance in the Potato Cyst Nematode, Globodera pallida
title_sort genomic impact of selection for virulence against resistance in the potato cyst nematode, globodera pallida
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760817/
https://www.ncbi.nlm.nih.gov/pubmed/33260722
http://dx.doi.org/10.3390/genes11121429
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