Population genomics of apricots unravels domestication history and adaptive events

The evolutionary and domestication history of apricots is poorly understood. Here, the authors provide four apricot high-quality genome assemblies, the genomes of 578 accessions from natural and cultivated populations, and show that Chinese and European apricots constitute two different gene pools,...

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Autores principales: Alexis Groppi, Shuo Liu, Amandine Cornille, Stéphane Decroocq, Quynh Trang Bui, David Tricon, Corinne Cruaud, Sandrine Arribat, Caroline Belser, William Marande, Jérôme Salse, Cécile Huneau, Nathalie Rodde, Wassim Rhalloussi, Stéphane Cauet, Benjamin Istace, Erwan Denis, Sébastien Carrère, Jean-Marc Audergon, Guillaume Roch, Patrick Lambert, Tetyana Zhebentyayeva, Wei-Sheng Liu, Olivier Bouchez, Céline Lopez-Roques, Rémy-Félix Serre, Robert Debuchy, Joseph Tran, Patrick Wincker, Xilong Chen, Pierre Pétriacq, Aurélien Barre, Macha Nikolski, Jean-Marc Aury, Albert Glenn Abbott, Tatiana Giraud, Véronique Decroocq
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/0104f159129445f597c4927ff812917d
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spelling oai:doaj.org-article:0104f159129445f597c4927ff812917d2021-12-02T17:45:15ZPopulation genomics of apricots unravels domestication history and adaptive events10.1038/s41467-021-24283-62041-1723https://doaj.org/article/0104f159129445f597c4927ff812917d2021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24283-6https://doaj.org/toc/2041-1723The evolutionary and domestication history of apricots is poorly understood. Here, the authors provide four apricot high-quality genome assemblies, the genomes of 578 accessions from natural and cultivated populations, and show that Chinese and European apricots constitute two different gene pools, resulting from independent domestication events.Alexis GroppiShuo LiuAmandine CornilleStéphane DecroocqQuynh Trang BuiDavid TriconCorinne CruaudSandrine ArribatCaroline BelserWilliam MarandeJérôme SalseCécile HuneauNathalie RoddeWassim RhalloussiStéphane CauetBenjamin IstaceErwan DenisSébastien CarrèreJean-Marc AudergonGuillaume RochPatrick LambertTetyana ZhebentyayevaWei-Sheng LiuOlivier BouchezCéline Lopez-RoquesRémy-Félix SerreRobert DebuchyJoseph TranPatrick WinckerXilong ChenPierre PétriacqAurélien BarreMacha NikolskiJean-Marc AuryAlbert Glenn AbbottTatiana GiraudVéronique DecroocqNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Alexis Groppi
Shuo Liu
Amandine Cornille
Stéphane Decroocq
Quynh Trang Bui
David Tricon
Corinne Cruaud
Sandrine Arribat
Caroline Belser
William Marande
Jérôme Salse
Cécile Huneau
Nathalie Rodde
Wassim Rhalloussi
Stéphane Cauet
Benjamin Istace
Erwan Denis
Sébastien Carrère
Jean-Marc Audergon
Guillaume Roch
Patrick Lambert
Tetyana Zhebentyayeva
Wei-Sheng Liu
Olivier Bouchez
Céline Lopez-Roques
Rémy-Félix Serre
Robert Debuchy
Joseph Tran
Patrick Wincker
Xilong Chen
Pierre Pétriacq
Aurélien Barre
Macha Nikolski
Jean-Marc Aury
Albert Glenn Abbott
Tatiana Giraud
Véronique Decroocq
Population genomics of apricots unravels domestication history and adaptive events
description The evolutionary and domestication history of apricots is poorly understood. Here, the authors provide four apricot high-quality genome assemblies, the genomes of 578 accessions from natural and cultivated populations, and show that Chinese and European apricots constitute two different gene pools, resulting from independent domestication events.
format article
author Alexis Groppi
Shuo Liu
Amandine Cornille
Stéphane Decroocq
Quynh Trang Bui
David Tricon
Corinne Cruaud
Sandrine Arribat
Caroline Belser
William Marande
Jérôme Salse
Cécile Huneau
Nathalie Rodde
Wassim Rhalloussi
Stéphane Cauet
Benjamin Istace
Erwan Denis
Sébastien Carrère
Jean-Marc Audergon
Guillaume Roch
Patrick Lambert
Tetyana Zhebentyayeva
Wei-Sheng Liu
Olivier Bouchez
Céline Lopez-Roques
Rémy-Félix Serre
Robert Debuchy
Joseph Tran
Patrick Wincker
Xilong Chen
Pierre Pétriacq
Aurélien Barre
Macha Nikolski
Jean-Marc Aury
Albert Glenn Abbott
Tatiana Giraud
Véronique Decroocq
author_facet Alexis Groppi
Shuo Liu
Amandine Cornille
Stéphane Decroocq
Quynh Trang Bui
David Tricon
Corinne Cruaud
Sandrine Arribat
Caroline Belser
William Marande
Jérôme Salse
Cécile Huneau
Nathalie Rodde
Wassim Rhalloussi
Stéphane Cauet
Benjamin Istace
Erwan Denis
Sébastien Carrère
Jean-Marc Audergon
Guillaume Roch
Patrick Lambert
Tetyana Zhebentyayeva
Wei-Sheng Liu
Olivier Bouchez
Céline Lopez-Roques
Rémy-Félix Serre
Robert Debuchy
Joseph Tran
Patrick Wincker
Xilong Chen
Pierre Pétriacq
Aurélien Barre
Macha Nikolski
Jean-Marc Aury
Albert Glenn Abbott
Tatiana Giraud
Véronique Decroocq
author_sort Alexis Groppi
title Population genomics of apricots unravels domestication history and adaptive events
title_short Population genomics of apricots unravels domestication history and adaptive events
title_full Population genomics of apricots unravels domestication history and adaptive events
title_fullStr Population genomics of apricots unravels domestication history and adaptive events
title_full_unstemmed Population genomics of apricots unravels domestication history and adaptive events
title_sort population genomics of apricots unravels domestication history and adaptive events
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/0104f159129445f597c4927ff812917d
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