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Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola

The downy mildew disease caused by the oomycete Plasmopara viticola is a serious threat for grapevine and can cause enormous yield losses in viticulture. The quantitative trait locus Rpv12, mediating resistance against P. viticola, was originally found in Asian Vitis amurensis. This locus and its ge...

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Autores principales: Frommer, Bianca, Müllner, Sophia, Holtgräwe, Daniela, Viehöver, Prisca, Huettel, Bruno, Töpfer, Reinhard, Weisshaar, Bernd, Zyprian, Eva
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10200900/
https://www.ncbi.nlm.nih.gov/pubmed/37223784
http://dx.doi.org/10.3389/fpls.2023.1180982
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author Frommer, Bianca
Müllner, Sophia
Holtgräwe, Daniela
Viehöver, Prisca
Huettel, Bruno
Töpfer, Reinhard
Weisshaar, Bernd
Zyprian, Eva
author_facet Frommer, Bianca
Müllner, Sophia
Holtgräwe, Daniela
Viehöver, Prisca
Huettel, Bruno
Töpfer, Reinhard
Weisshaar, Bernd
Zyprian, Eva
author_sort Frommer, Bianca
collection PubMed
description The downy mildew disease caused by the oomycete Plasmopara viticola is a serious threat for grapevine and can cause enormous yield losses in viticulture. The quantitative trait locus Rpv12, mediating resistance against P. viticola, was originally found in Asian Vitis amurensis. This locus and its genes were analyzed here in detail. A haplotype-separated genome sequence of the diploid Rpv12-carrier Gf.99-03 was created and annotated. The defense response against P. viticola was investigated in an infection time-course RNA-seq experiment, revealing approximately 600 upregulated Vitis genes during host–pathogen interaction. The Rpv12 regions of the resistance and the sensitivity encoding Gf.99-03 haplotype were structurally and functionally compared with each other. Two different clusters of resistance-related genes were identified within the Rpv12 locus. One cluster carries a set of four differentially expressed genes with three ACCELERATED CELL DEATH 6-like genes. The other cluster carries a set of six resistance gene analogs related to qualitative pathogen resistance. The Rpv12 locus and its candidate genes for P. viticola resistance provide a precious genetic resource for P. viticola resistance breeding. Newly developed co-segregating simple sequence repeat markers in close proximity to the R-genes enable its improved applicability in marker-assisted grapevine breeding.
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spelling pubmed-102009002023-05-23 Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola Frommer, Bianca Müllner, Sophia Holtgräwe, Daniela Viehöver, Prisca Huettel, Bruno Töpfer, Reinhard Weisshaar, Bernd Zyprian, Eva Front Plant Sci Plant Science The downy mildew disease caused by the oomycete Plasmopara viticola is a serious threat for grapevine and can cause enormous yield losses in viticulture. The quantitative trait locus Rpv12, mediating resistance against P. viticola, was originally found in Asian Vitis amurensis. This locus and its genes were analyzed here in detail. A haplotype-separated genome sequence of the diploid Rpv12-carrier Gf.99-03 was created and annotated. The defense response against P. viticola was investigated in an infection time-course RNA-seq experiment, revealing approximately 600 upregulated Vitis genes during host–pathogen interaction. The Rpv12 regions of the resistance and the sensitivity encoding Gf.99-03 haplotype were structurally and functionally compared with each other. Two different clusters of resistance-related genes were identified within the Rpv12 locus. One cluster carries a set of four differentially expressed genes with three ACCELERATED CELL DEATH 6-like genes. The other cluster carries a set of six resistance gene analogs related to qualitative pathogen resistance. The Rpv12 locus and its candidate genes for P. viticola resistance provide a precious genetic resource for P. viticola resistance breeding. Newly developed co-segregating simple sequence repeat markers in close proximity to the R-genes enable its improved applicability in marker-assisted grapevine breeding. Frontiers Media S.A. 2023-05-08 /pmc/articles/PMC10200900/ /pubmed/37223784 http://dx.doi.org/10.3389/fpls.2023.1180982 Text en Copyright © 2023 Frommer, Müllner, Holtgräwe, Viehöver, Huettel, Töpfer, Weisshaar and Zyprian https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Frommer, Bianca
Müllner, Sophia
Holtgräwe, Daniela
Viehöver, Prisca
Huettel, Bruno
Töpfer, Reinhard
Weisshaar, Bernd
Zyprian, Eva
Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola
title Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola
title_full Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola
title_fullStr Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola
title_full_unstemmed Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola
title_short Phased grapevine genome sequence of an Rpv12 carrier for biotechnological exploration of resistance to Plasmopara viticola
title_sort phased grapevine genome sequence of an rpv12 carrier for biotechnological exploration of resistance to plasmopara viticola
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10200900/
https://www.ncbi.nlm.nih.gov/pubmed/37223784
http://dx.doi.org/10.3389/fpls.2023.1180982
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