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dc.contributor.author
Bertioli, David J.
dc.contributor.author
Jenkins, Jerry
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Clevenger, Josh
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Dudchenko, Olga
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Gao, Dongying
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Seijo, José Guillermo
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Leal Bertioli, Soraya C.M.
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Ren, Longhui
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Farmer, Andrew D.
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Pandey, Manish K.
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Samoluk, Sergio Sebastián
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Abernathy, Brian
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Agarwal, Gaurav
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Ballén Taborda, Carolina
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Cameron, Connor
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Campbell, Jacqueline
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Chavarro, Carolina
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Chitikineni, Annapurna
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Chu, Ye
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Dash, Sudhansu
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El Baidouri, Moaine
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Guo, Baozhu
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Huang, Wei
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Kim, Kyung Do
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Korani, Walid
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Lanciano, Sophie
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Lui, Christopher G.
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Mirouze, Marie
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Moretzsohn, Márcio C.
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Pham, Melanie
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Shin, Jin Hee
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Shirasawa, Kenta Shirasawa
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Sinharoy, Senjuti
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Sreedasyam, Avinash
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Weeks, Nathan T.
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Zhang, Xinyou
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Zheng, Zheng
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Sun, Ziqi
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Froenicke, Lutz
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Aiden, Erez L.
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Michelmore, Richard
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Varshney, Rajeev K.
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Holbrook, C. Corley
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Cannon, Ethalinda K. S.
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Scheffler, Brian E.
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Grimwood, Jane
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Ozias-Akins, Peggy
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Cannon, Steven B.
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Jackson, Scott A.
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Schmutz, Jeremy
dc.date.available
2020-06-25T18:19:38Z
dc.date.issued
2019-05
dc.identifier.citation
Bertioli, David J.; Jenkins, Jerry; Clevenger, Josh; Dudchenko, Olga; Gao, Dongying; et al.; The genome sequence of segmental allotetraploid peanut Arachis hypogaea; Nature Publishing Group; Nature Genetics; 51; 5; 5-2019; 877-884
dc.identifier.issn
1061-4036
dc.identifier.uri
http://hdl.handle.net/11336/108255
dc.description.abstract
Like many other crops, the cultivated peanut (Arachis hypogaea L.) is of hybrid origin and has a polyploid genome that contains essentially complete sets of chromosomes from two ancestral species. Here we report the genome sequence of peanut and show that after its polyploid origin, the genome has evolved through mobile-element activity, deletions and by the flow of genetic information between corresponding ancestral chromosomes (that is, homeologous recombination). Uniformity of patterns of homeologous recombination at the ends of chromosomes favors a single origin for cultivated peanut and its wild counterpart A. monticola. However, through much of the genome, homeologous recombination has created diversity. Using new polyploid hybrids made from the ancestral species, we show how this can generate phenotypic changes such as spontaneous changes in the color of the flowers. We suggest that diversity generated by these genetic mechanisms helped to favor the domestication of the polyploid A. hypogaea over other diploid Arachis species cultivated by humans.
dc.format
application/pdf
dc.language.iso
eng
dc.publisher
Nature Publishing Group
dc.rights
info:eu-repo/semantics/openAccess
dc.rights.uri
https://creativecommons.org/licenses/by/2.5/ar/
dc.subject
ARACHIS HYPOGAEA
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GENOME
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SEGMENTAL ALLOTETRAPLOID
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Biotecnología Agrícola y Biotecnología Alimentaria
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Biotecnología Agropecuaria
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CIENCIAS AGRÍCOLAS
dc.title
The genome sequence of segmental allotetraploid peanut Arachis hypogaea
dc.type
info:eu-repo/semantics/article
dc.type
info:ar-repo/semantics/artículo
dc.type
info:eu-repo/semantics/publishedVersion
dc.date.updated
2020-06-23T14:50:48Z
dc.identifier.eissn
1546-1718
dc.journal.volume
51
dc.journal.number
5
dc.journal.pagination
877-884
dc.journal.pais
Reino Unido
dc.journal.ciudad
Londres
dc.description.fil
Fil: Bertioli, David J.. University of Georgia; Estados Unidos
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Fil: Jenkins, Jerry. Hudsonalpha Institute For Biotechnology; Estados Unidos
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Fil: Clevenger, Josh. University of Georgia; Estados Unidos
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Fil: Dudchenko, Olga. The Center for Genome Architecture; Estados Unidos
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Fil: Gao, Dongying. University of Georgia; Estados Unidos
dc.description.fil
Fil: Seijo, José Guillermo. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Nordeste. Instituto de Botánica del Nordeste. Universidad Nacional del Nordeste. Facultad de Ciencias Agrarias. Instituto de Botánica del Nordeste; Argentina
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Fil: Leal Bertioli, Soraya C.M.. Universidad Nacional del Nordeste; Argentina
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Fil: Ren, Longhui. University of Georgia; Estados Unidos
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Fil: Farmer, Andrew D.. University of Georgia; Estados Unidos
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Fil: Pandey, Manish K.. Center of Excellence in Genomics & Systems Biology, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT); India
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Fil: Samoluk, Sergio Sebastián. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Nordeste. Instituto de Botánica del Nordeste. Universidad Nacional del Nordeste. Facultad de Ciencias Agrarias. Instituto de Botánica del Nordeste; Argentina
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Fil: Abernathy, Brian. University of Georgia; Estados Unidos
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Fil: Agarwal, Gaurav. University of Georgia; Estados Unidos
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Fil: Ballén Taborda, Carolina. University of Georgia; Estados Unidos
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Fil: Cameron, Connor. National Center for Genome Resources; Estados Unidos
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Fil: Campbell, Jacqueline. University of Iowa; Estados Unidos
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Fil: Chavarro, Carolina. University of Georgia; Estados Unidos
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Fil: Chitikineni, Annapurna. Center of Excellence in Genomics & Systems Biology, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT); India
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Fil: Chu, Ye. University of Georgia; Estados Unidos
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Fil: Dash, Sudhansu. National Center for Genome Resources; Estados Unidos
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Fil: El Baidouri, Moaine. Centre National de la Recherche Scientifique; Francia
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Fil: Guo, Baozhu. University of Georgia; Estados Unidos
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Fil: Huang, Wei. University of Iowa; Estados Unidos
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Fil: Kim, Kyung Do. University of Georgia; Estados Unidos. Corporate R&D, LG Chem; Corea del Sur
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Fil: Korani, Walid. University of Georgia; Estados Unidos
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Fil: Lanciano, Sophie. Centre National de la Recherche Scientifique; Francia
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Fil: Lui, Christopher G.. The Center for Genome Architecture; Estados Unidos
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Fil: Mirouze, Marie. Centre National de la Recherche Scientifique; Francia
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Fil: Moretzsohn, Márcio C.. Ministerio da Agricultura Pecuaria e Abastecimento de Brasil. Empresa Brasileira de Pesquisa Agropecuaria; Brasil
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Fil: Pham, Melanie. The Center for Genome Architecture; Estados Unidos
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Fil: Shin, Jin Hee. University of Georgia; Estados Unidos
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Fil: Shirasawa, Kenta Shirasawa. Department of Frontier Research and Development, Kazusa DNA Research Institute; Japón
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Fil: Sinharoy, Senjuti. National Institute of Plant Genome Research; India
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Fil: Sreedasyam, Avinash. Hudson Alpha Institute of Biotechnology; Estados Unidos
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Fil: Weeks, Nathan T.. United States Department of Agriculture; Estados Unidos
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Fil: Zhang, Xinyou. Henan Academy of Agricultural Sciences; China
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Fil: Zheng, Zheng. Henan Academy of Agricultural Sciences; China
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Fil: Sun, Ziqi. Henan Academy of Agricultural Sciences; China
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Fil: Froenicke, Lutz. University of California at Davis; Estados Unidos
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Fil: Aiden, Erez L.. The Center for Genome Architecture; Estados Unidos
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Fil: Michelmore, Richard. University of California at Davis; Estados Unidos
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Fil: Varshney, Rajeev K.. Center of Excellence in Genomics & Systems Biology, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT); India
dc.description.fil
Fil: Holbrook, C. Corley. United States Department of Agriculture; Estados Unidos
dc.description.fil
Fil: Cannon, Ethalinda K. S.. University of Iowa; Estados Unidos
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Fil: Scheffler, Brian E.. United States Department of Agriculture; Estados Unidos
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Fil: Grimwood, Jane. Hudson Alpha Institute of Biotechnology; Estados Unidos
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Fil: Ozias-Akins, Peggy. University of Georgia; Estados Unidos
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Fil: Cannon, Steven B.. United States Department of Agriculture; Estados Unidos
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Fil: Jackson, Scott A.. University of Georgia; Estados Unidos
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Fil: Schmutz, Jeremy. Hudson Alpha Institute of Biotechnology; Estados Unidos
dc.journal.title
Nature Genetics
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.1038/s41588-019-0405-z
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/https://www.nature.com/articles/s41588-019-0405-z
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