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dc.rights.licenseopenen_US
dc.contributor.authorDONG, Yang
dc.contributor.authorDUAN, Shengchang
dc.contributor.authorXIA, Qiuju
dc.contributor.authorLIANG, Zhenchang
dc.contributor.authorDONG, Xiao
dc.contributor.authorMARGARYAN, Kristine
dc.contributor.authorMUSAYEV, Mirza
dc.contributor.authorGORYSLAVETS, Svitlana
dc.contributor.authorZDUNIĆ, Goran
hal.structure.identifierEcophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
dc.contributor.authorBERT, Pierre-Francois
dc.contributor.authorLACOMBE, Thierry
dc.contributor.authorMAUL, Erika
dc.contributor.authorNICK, Peter
dc.contributor.authorBITSKINASHVILI, Kakha
dc.contributor.authorBISZTRAY, György Dénes
dc.contributor.authorDRORI, Elyashiv
dc.contributor.authorDE LORENZIS, Gabriella
dc.contributor.authorCUNHA, Jorge
dc.contributor.authorPOPESCU, Carmen Florentina
dc.contributor.authorARROYO-GARCIA, Rosa
dc.contributor.authorARNOLD, Claire
dc.contributor.authorERGÜL, Ali
dc.contributor.authorZHU, Yifan
dc.contributor.authorMA, Chao
dc.contributor.authorWANG, Shufen
dc.contributor.authorLIU, Siqi
dc.contributor.authorTANG, Liu
dc.contributor.authorWANG, Chunping
dc.contributor.authorLI, Dawei
dc.contributor.authorPAN, Yunbing
dc.contributor.authorLI, Jingxian
dc.contributor.authorYANG, Ling
dc.contributor.authorLI, Xuzhen
dc.contributor.authorXIANG, Guisheng
dc.contributor.authorYANG, Zijiang
dc.contributor.authorCHEN, Baozheng
dc.contributor.authorDAI, Zhanwu
dc.contributor.authorWANG, Yi
dc.contributor.authorARAKELYAN, Arsen
dc.contributor.authorKULIYEV, Varis
dc.contributor.authorSPOTAR, Gennady
hal.structure.identifierEcophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
dc.contributor.authorGIROLLET, Nabil
hal.structure.identifierEcophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
dc.contributor.authorDELROT, Serge
hal.structure.identifierEcophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
dc.contributor.authorOLLAT, Nathalie
dc.contributor.authorTHIS, Patrice
dc.contributor.authorMARCHAL, Cécile
dc.contributor.authorSARAH, Gautier
dc.contributor.authorLAUCOU, Valérie
dc.contributor.authorBACILIERI, Roberto
dc.contributor.authorRÖCKEL, Franco
dc.contributor.authorGUAN, Pingyin
dc.contributor.authorJUNG, Andreas
dc.contributor.authorRIEMANN, Michael
dc.contributor.authorUJMAJURIDZE, Levan
dc.contributor.authorZAKALASHVILI, Tekle
dc.contributor.authorMAGHRADZE, David
dc.contributor.authorHÖHN, Maria
dc.contributor.authorJAHNKE, Gizella
dc.contributor.authorKISS, Erzsébet
dc.contributor.authorDEÁK, Tamás
dc.contributor.authorRAHIMI, Oshrit
dc.contributor.authorHÜBNER, Sariel
dc.contributor.authorGRASSI, Fabrizio
dc.contributor.authorMERCATI, Francesco
dc.contributor.authorSUNSERI, Francesco
dc.contributor.authorEIRAS-DIAS, José
dc.contributor.authorDUMITRU, Anamaria Mirabela
dc.contributor.authorCARRASCO, David
dc.contributor.authorRODRIGUEZ-IZQUIERDO, Alberto
dc.contributor.authorMUÑOZ, Gregorio
dc.contributor.authorUYSAL, Tamer
dc.contributor.authorÖZER, Cengiz
dc.contributor.authorKAZAN, Kemal
dc.contributor.authorXU, Meilong
dc.contributor.authorWANG, Yunyue
dc.contributor.authorZHU, Shusheng
dc.contributor.authorLU, Jiang
dc.contributor.authorZHAO, Maoxiang
dc.contributor.authorWANG, Lei
dc.contributor.authorJIU, Songtao
dc.contributor.authorZHANG, Ying
dc.contributor.authorSUN, Lei
dc.contributor.authorYANG, Huanming
dc.contributor.authorWEISS, Ehud
dc.contributor.authorWANG, Shiping
dc.contributor.authorZHU, Youyong
dc.contributor.authorLI, Shaohua
dc.contributor.authorSHENG, Jun
dc.contributor.authorCHEN, Wei
dc.date.accessioned2024-02-05T15:23:04Z
dc.date.available2024-02-05T15:23:04Z
dc.date.issued2023-03-03
dc.identifier.issn0036-8075en_US
dc.identifier.urioai:crossref.org:10.1126/science.add8655
dc.identifier.urihttps://oskar-bordeaux.fr/handle/20.500.12278/187836
dc.description.abstractEnWe elucidate grapevine evolution and domestication histories with 3525 cultivated and wild accessions worldwide. In the Pleistocene, harsh climate drove the separation of wild grape ecotypes caused by continuous habitat fragmentation. Then, domestication occurred concurrently about 11,000 years ago in Western Asia and the Caucasus to yield table and wine grapevines. The Western Asia domesticates dispersed into Europe with early farmers, introgressed with ancient wild western ecotypes, and subsequently diversified along human migration trails into muscat and unique western wine grape ancestries by the late Neolithic. Analyses of domestication traits also reveal new insights into selection for berry palatability, hermaphroditism, muscat flavor, and berry skin color. These data demonstrate the role of the grapevines in the early inception of agriculture across Eurasia.
dc.language.isoENen_US
dc.sourcecrossref
dc.title.enDual domestications and origin of traits in grapevine evolution
dc.typeArticle de revueen_US
dc.identifier.doi10.1126/science.add8655en_US
dc.subject.halSciences du Vivant [q-bio]/Biologie végétaleen_US
bordeaux.journalScienceen_US
bordeaux.page892-901en_US
bordeaux.volume379en_US
bordeaux.hal.laboratoriesEcophysiologie et Génomique Fonctionnelle de la Vigne (EGFV) - UMR 1287en_US
bordeaux.issue6635en_US
bordeaux.institutionUniversité de Bordeauxen_US
bordeaux.institutionBordeaux Sciences Agroen_US
bordeaux.institutionINRAEen_US
bordeaux.peerReviewedouien_US
bordeaux.inpressnonen_US
bordeaux.import.sourcedissemin
hal.popularnonen_US
hal.audienceInternationaleen_US
hal.exportfalse
workflow.import.sourcedissemin
dc.rights.ccPas de Licence CCen_US
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