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An integrated approach for increasing breeding efficiency in apple and peach in Europe

Despite the availability of whole genome sequences of apple and peach, there has been a considerable gap between genomics and breeding. To bridge the gap, the European Union funded the FruitBreedomics project (March 2011 to August 2015) involving 28 research institutes and private companies. Three c...

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Autores principales: Laurens, Francois, Aranzana, Maria José, Arus, Pere, Bassi, Daniele, Bink, Marco, Bonany, Joan, Caprera, Andrea, Corelli-Grappadelli, Luca, Costes, Evelyne, Durel, Charles-Eric, Mauroux, Jehan-Baptiste, Muranty, Hélène, Nazzicari, Nelson, Pascal, Thierry, Patocchi, Andrea, Peil, Andreas, Quilot-Turion, Bénédicte, Rossini, Laura, Stella, Alessandra, Troggio, Michela, Velasco, Riccardo, van de Weg, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5830435/
https://www.ncbi.nlm.nih.gov/pubmed/29507735
http://dx.doi.org/10.1038/s41438-018-0016-3
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author Laurens, Francois
Aranzana, Maria José
Arus, Pere
Bassi, Daniele
Bink, Marco
Bonany, Joan
Caprera, Andrea
Corelli-Grappadelli, Luca
Costes, Evelyne
Durel, Charles-Eric
Mauroux, Jehan-Baptiste
Muranty, Hélène
Nazzicari, Nelson
Pascal, Thierry
Patocchi, Andrea
Peil, Andreas
Quilot-Turion, Bénédicte
Rossini, Laura
Stella, Alessandra
Troggio, Michela
Velasco, Riccardo
van de Weg, Eric
author_facet Laurens, Francois
Aranzana, Maria José
Arus, Pere
Bassi, Daniele
Bink, Marco
Bonany, Joan
Caprera, Andrea
Corelli-Grappadelli, Luca
Costes, Evelyne
Durel, Charles-Eric
Mauroux, Jehan-Baptiste
Muranty, Hélène
Nazzicari, Nelson
Pascal, Thierry
Patocchi, Andrea
Peil, Andreas
Quilot-Turion, Bénédicte
Rossini, Laura
Stella, Alessandra
Troggio, Michela
Velasco, Riccardo
van de Weg, Eric
author_sort Laurens, Francois
collection PubMed
description Despite the availability of whole genome sequences of apple and peach, there has been a considerable gap between genomics and breeding. To bridge the gap, the European Union funded the FruitBreedomics project (March 2011 to August 2015) involving 28 research institutes and private companies. Three complementary approaches were pursued: (i) tool and software development, (ii) deciphering genetic control of main horticultural traits taking into account allelic diversity and (iii) developing plant materials, tools and methodologies for breeders. Decisive breakthroughs were made including the making available of ready-to-go DNA diagnostic tests for Marker Assisted Breeding, development of new, dense SNP arrays in apple and peach, new phenotypic methods for some complex traits, software for gene/QTL discovery on breeding germplasm via Pedigree Based Analysis (PBA). This resulted in the discovery of highly predictive molecular markers for traits of horticultural interest via PBA and via Genome Wide Association Studies (GWAS) on several European genebank collections. FruitBreedomics also developed pre-breeding plant materials in which multiple sources of resistance were pyramided and software that can support breeders in their selection activities. Through FruitBreedomics, significant progresses were made in the field of apple and peach breeding, genetics, genomics and bioinformatics of which advantage will be made by breeders, germplasm curators and scientists. A major part of the data collected during the project has been stored in the FruitBreedomics database and has been made available to the public. This review covers the scientific discoveries made in this major endeavour, and perspective in the apple and peach breeding and genomics in Europe and beyond.
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spelling pubmed-58304352018-03-05 An integrated approach for increasing breeding efficiency in apple and peach in Europe Laurens, Francois Aranzana, Maria José Arus, Pere Bassi, Daniele Bink, Marco Bonany, Joan Caprera, Andrea Corelli-Grappadelli, Luca Costes, Evelyne Durel, Charles-Eric Mauroux, Jehan-Baptiste Muranty, Hélène Nazzicari, Nelson Pascal, Thierry Patocchi, Andrea Peil, Andreas Quilot-Turion, Bénédicte Rossini, Laura Stella, Alessandra Troggio, Michela Velasco, Riccardo van de Weg, Eric Hortic Res Review Article Despite the availability of whole genome sequences of apple and peach, there has been a considerable gap between genomics and breeding. To bridge the gap, the European Union funded the FruitBreedomics project (March 2011 to August 2015) involving 28 research institutes and private companies. Three complementary approaches were pursued: (i) tool and software development, (ii) deciphering genetic control of main horticultural traits taking into account allelic diversity and (iii) developing plant materials, tools and methodologies for breeders. Decisive breakthroughs were made including the making available of ready-to-go DNA diagnostic tests for Marker Assisted Breeding, development of new, dense SNP arrays in apple and peach, new phenotypic methods for some complex traits, software for gene/QTL discovery on breeding germplasm via Pedigree Based Analysis (PBA). This resulted in the discovery of highly predictive molecular markers for traits of horticultural interest via PBA and via Genome Wide Association Studies (GWAS) on several European genebank collections. FruitBreedomics also developed pre-breeding plant materials in which multiple sources of resistance were pyramided and software that can support breeders in their selection activities. Through FruitBreedomics, significant progresses were made in the field of apple and peach breeding, genetics, genomics and bioinformatics of which advantage will be made by breeders, germplasm curators and scientists. A major part of the data collected during the project has been stored in the FruitBreedomics database and has been made available to the public. This review covers the scientific discoveries made in this major endeavour, and perspective in the apple and peach breeding and genomics in Europe and beyond. Nature Publishing Group UK 2018-03-01 /pmc/articles/PMC5830435/ /pubmed/29507735 http://dx.doi.org/10.1038/s41438-018-0016-3 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Review Article
Laurens, Francois
Aranzana, Maria José
Arus, Pere
Bassi, Daniele
Bink, Marco
Bonany, Joan
Caprera, Andrea
Corelli-Grappadelli, Luca
Costes, Evelyne
Durel, Charles-Eric
Mauroux, Jehan-Baptiste
Muranty, Hélène
Nazzicari, Nelson
Pascal, Thierry
Patocchi, Andrea
Peil, Andreas
Quilot-Turion, Bénédicte
Rossini, Laura
Stella, Alessandra
Troggio, Michela
Velasco, Riccardo
van de Weg, Eric
An integrated approach for increasing breeding efficiency in apple and peach in Europe
title An integrated approach for increasing breeding efficiency in apple and peach in Europe
title_full An integrated approach for increasing breeding efficiency in apple and peach in Europe
title_fullStr An integrated approach for increasing breeding efficiency in apple and peach in Europe
title_full_unstemmed An integrated approach for increasing breeding efficiency in apple and peach in Europe
title_short An integrated approach for increasing breeding efficiency in apple and peach in Europe
title_sort integrated approach for increasing breeding efficiency in apple and peach in europe
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5830435/
https://www.ncbi.nlm.nih.gov/pubmed/29507735
http://dx.doi.org/10.1038/s41438-018-0016-3
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