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Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family

In winegrapes (Vitis spp.), fruit quality traits such as berry color, total soluble solids content (SS), malic acid content (MA), and yeast assimilable nitrogen (YAN) affect fermentation or wine quality, and are important traits in selecting new hybrid winegrape cultivars. Given the high genetic div...

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Autores principales: Yang, Shanshan, Fresnedo-Ramírez, Jonathan, Sun, Qi, Manns, David C., Sacks, Gavin L., Mansfield, Anna Katharine, Luby, James J., Londo, Jason P., Reisch, Bruce I., Cadle-Davidson, Lance E., Fennell, Anne Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4790954/
https://www.ncbi.nlm.nih.gov/pubmed/26974672
http://dx.doi.org/10.1371/journal.pone.0149560
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author Yang, Shanshan
Fresnedo-Ramírez, Jonathan
Sun, Qi
Manns, David C.
Sacks, Gavin L.
Mansfield, Anna Katharine
Luby, James J.
Londo, Jason P.
Reisch, Bruce I.
Cadle-Davidson, Lance E.
Fennell, Anne Y.
author_facet Yang, Shanshan
Fresnedo-Ramírez, Jonathan
Sun, Qi
Manns, David C.
Sacks, Gavin L.
Mansfield, Anna Katharine
Luby, James J.
Londo, Jason P.
Reisch, Bruce I.
Cadle-Davidson, Lance E.
Fennell, Anne Y.
author_sort Yang, Shanshan
collection PubMed
description In winegrapes (Vitis spp.), fruit quality traits such as berry color, total soluble solids content (SS), malic acid content (MA), and yeast assimilable nitrogen (YAN) affect fermentation or wine quality, and are important traits in selecting new hybrid winegrape cultivars. Given the high genetic diversity and heterozygosity of Vitis species and their tendency to exhibit inbreeding depression, linkage map construction and quantitative trait locus (QTL) mapping has relied on F(1) families with the use of simple sequence repeat (SSR) and other markers. This study presents the construction of a genetic map by single nucleotide polymorphisms identified through genotyping-by-sequencing (GBS) technology in an F(2) mapping family of 424 progeny derived from a cross between the wild species V. riparia Michx. and the interspecific hybrid winegrape cultivar, ‘Seyval’. The resulting map has 1449 markers spanning 2424 cM in genetic length across 19 linkage groups, covering 95% of the genome with an average distance between markers of 1.67 cM. Compared to an SSR map previously developed for this F(2) family, these results represent an improved map covering a greater portion of the genome with higher marker density. The accuracy of the map was validated using the well-studied trait berry color. QTL affecting YAN, MA and SS related traits were detected. A joint MA and SS QTL spans a region with candidate genes involved in the malate metabolism pathway. We present an analytical pipeline for calling intercross GBS markers and a high-density linkage map for a large F(2) family of the highly heterozygous Vitis genus. This study serves as a model for further genetic investigations of the molecular basis of additional unique characters of North American hybrid wine cultivars and to enhance the breeding process by marker-assisted selection. The GBS protocols for identifying intercross markers developed in this study can be adapted for other heterozygous species.
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spelling pubmed-47909542016-03-23 Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family Yang, Shanshan Fresnedo-Ramírez, Jonathan Sun, Qi Manns, David C. Sacks, Gavin L. Mansfield, Anna Katharine Luby, James J. Londo, Jason P. Reisch, Bruce I. Cadle-Davidson, Lance E. Fennell, Anne Y. PLoS One Research Article In winegrapes (Vitis spp.), fruit quality traits such as berry color, total soluble solids content (SS), malic acid content (MA), and yeast assimilable nitrogen (YAN) affect fermentation or wine quality, and are important traits in selecting new hybrid winegrape cultivars. Given the high genetic diversity and heterozygosity of Vitis species and their tendency to exhibit inbreeding depression, linkage map construction and quantitative trait locus (QTL) mapping has relied on F(1) families with the use of simple sequence repeat (SSR) and other markers. This study presents the construction of a genetic map by single nucleotide polymorphisms identified through genotyping-by-sequencing (GBS) technology in an F(2) mapping family of 424 progeny derived from a cross between the wild species V. riparia Michx. and the interspecific hybrid winegrape cultivar, ‘Seyval’. The resulting map has 1449 markers spanning 2424 cM in genetic length across 19 linkage groups, covering 95% of the genome with an average distance between markers of 1.67 cM. Compared to an SSR map previously developed for this F(2) family, these results represent an improved map covering a greater portion of the genome with higher marker density. The accuracy of the map was validated using the well-studied trait berry color. QTL affecting YAN, MA and SS related traits were detected. A joint MA and SS QTL spans a region with candidate genes involved in the malate metabolism pathway. We present an analytical pipeline for calling intercross GBS markers and a high-density linkage map for a large F(2) family of the highly heterozygous Vitis genus. This study serves as a model for further genetic investigations of the molecular basis of additional unique characters of North American hybrid wine cultivars and to enhance the breeding process by marker-assisted selection. The GBS protocols for identifying intercross markers developed in this study can be adapted for other heterozygous species. Public Library of Science 2016-03-14 /pmc/articles/PMC4790954/ /pubmed/26974672 http://dx.doi.org/10.1371/journal.pone.0149560 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Yang, Shanshan
Fresnedo-Ramírez, Jonathan
Sun, Qi
Manns, David C.
Sacks, Gavin L.
Mansfield, Anna Katharine
Luby, James J.
Londo, Jason P.
Reisch, Bruce I.
Cadle-Davidson, Lance E.
Fennell, Anne Y.
Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family
title Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family
title_full Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family
title_fullStr Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family
title_full_unstemmed Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family
title_short Next Generation Mapping of Enological Traits in an F(2) Interspecific Grapevine Hybrid Family
title_sort next generation mapping of enological traits in an f(2) interspecific grapevine hybrid family
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4790954/
https://www.ncbi.nlm.nih.gov/pubmed/26974672
http://dx.doi.org/10.1371/journal.pone.0149560
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