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A reference genome for common bean and genome-wide analysis of dual domestications

Common bean (Phaseolus vulgaris L.) is the most important grain legume for human consumption and has a role in sustainable agriculture owing to its ability to fix atmospheric nitrogen. We assembled 473 Mb of the 587-Mb genome and genetically anchored 98% of this sequence in 11 chromosome-scale pseud...

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Autores principales: Schmutz, Jeremy, McClean, Phillip E, Mamidi, Sujan, Wu, G Albert, Cannon, Steven B, Grimwood, Jane, Jenkins, Jerry, Shu, Shengqiang, Song, Qijian, Chavarro, Carolina, Torres-Torres, Mirayda, Geffroy, Valerie, Moghaddam, Samira Mafi, Gao, Dongying, Abernathy, Brian, Barry, Kerrie, Blair, Matthew, Brick, Mark A, Chovatia, Mansi, Gepts, Paul, Goodstein, David M, Gonzales, Michael, Hellsten, Uffe, Hyten, David L, Jia, Gaofeng, Kelly, James D, Kudrna, Dave, Lee, Rian, Richard, Manon M S, Miklas, Phillip N, Osorno, Juan M, Rodrigues, Josiane, Thareau, Vincent, Urrea, Carlos A, Wang, Mei, Yu, Yeisoo, Zhang, Ming, Wing, Rod A, Cregan, Perry B, Rokhsar, Daniel S, Jackson, Scott A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7048698/
https://www.ncbi.nlm.nih.gov/pubmed/24908249
http://dx.doi.org/10.1038/ng.3008
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author Schmutz, Jeremy
McClean, Phillip E
Mamidi, Sujan
Wu, G Albert
Cannon, Steven B
Grimwood, Jane
Jenkins, Jerry
Shu, Shengqiang
Song, Qijian
Chavarro, Carolina
Torres-Torres, Mirayda
Geffroy, Valerie
Moghaddam, Samira Mafi
Gao, Dongying
Abernathy, Brian
Barry, Kerrie
Blair, Matthew
Brick, Mark A
Chovatia, Mansi
Gepts, Paul
Goodstein, David M
Gonzales, Michael
Hellsten, Uffe
Hyten, David L
Jia, Gaofeng
Kelly, James D
Kudrna, Dave
Lee, Rian
Richard, Manon M S
Miklas, Phillip N
Osorno, Juan M
Rodrigues, Josiane
Thareau, Vincent
Urrea, Carlos A
Wang, Mei
Yu, Yeisoo
Zhang, Ming
Wing, Rod A
Cregan, Perry B
Rokhsar, Daniel S
Jackson, Scott A
author_facet Schmutz, Jeremy
McClean, Phillip E
Mamidi, Sujan
Wu, G Albert
Cannon, Steven B
Grimwood, Jane
Jenkins, Jerry
Shu, Shengqiang
Song, Qijian
Chavarro, Carolina
Torres-Torres, Mirayda
Geffroy, Valerie
Moghaddam, Samira Mafi
Gao, Dongying
Abernathy, Brian
Barry, Kerrie
Blair, Matthew
Brick, Mark A
Chovatia, Mansi
Gepts, Paul
Goodstein, David M
Gonzales, Michael
Hellsten, Uffe
Hyten, David L
Jia, Gaofeng
Kelly, James D
Kudrna, Dave
Lee, Rian
Richard, Manon M S
Miklas, Phillip N
Osorno, Juan M
Rodrigues, Josiane
Thareau, Vincent
Urrea, Carlos A
Wang, Mei
Yu, Yeisoo
Zhang, Ming
Wing, Rod A
Cregan, Perry B
Rokhsar, Daniel S
Jackson, Scott A
author_sort Schmutz, Jeremy
collection PubMed
description Common bean (Phaseolus vulgaris L.) is the most important grain legume for human consumption and has a role in sustainable agriculture owing to its ability to fix atmospheric nitrogen. We assembled 473 Mb of the 587-Mb genome and genetically anchored 98% of this sequence in 11 chromosome-scale pseudomolecules. We compared the genome for the common bean against the soybean genome to find changes in soybean resulting from polyploidy. Using resequencing of 60 wild individuals and 100 landraces from the genetically differentiated Mesoamerican and Andean gene pools, we confirmed 2 independent domestications from genetic pools that diverged before human colonization. Less than 10% of the 74 Mb of sequence putatively involved in domestication was shared by the two domestication events. We identified a set of genes linked with increased leaf and seed size and combined these results with quantitative trait locus data from Mesoamerican cultivars. Genes affected by domestication may be useful for genomics-enabled crop improvement. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/ng.3008) contains supplementary material, which is available to authorized users.
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spelling pubmed-70486982020-03-04 A reference genome for common bean and genome-wide analysis of dual domestications Schmutz, Jeremy McClean, Phillip E Mamidi, Sujan Wu, G Albert Cannon, Steven B Grimwood, Jane Jenkins, Jerry Shu, Shengqiang Song, Qijian Chavarro, Carolina Torres-Torres, Mirayda Geffroy, Valerie Moghaddam, Samira Mafi Gao, Dongying Abernathy, Brian Barry, Kerrie Blair, Matthew Brick, Mark A Chovatia, Mansi Gepts, Paul Goodstein, David M Gonzales, Michael Hellsten, Uffe Hyten, David L Jia, Gaofeng Kelly, James D Kudrna, Dave Lee, Rian Richard, Manon M S Miklas, Phillip N Osorno, Juan M Rodrigues, Josiane Thareau, Vincent Urrea, Carlos A Wang, Mei Yu, Yeisoo Zhang, Ming Wing, Rod A Cregan, Perry B Rokhsar, Daniel S Jackson, Scott A Nat Genet Article Common bean (Phaseolus vulgaris L.) is the most important grain legume for human consumption and has a role in sustainable agriculture owing to its ability to fix atmospheric nitrogen. We assembled 473 Mb of the 587-Mb genome and genetically anchored 98% of this sequence in 11 chromosome-scale pseudomolecules. We compared the genome for the common bean against the soybean genome to find changes in soybean resulting from polyploidy. Using resequencing of 60 wild individuals and 100 landraces from the genetically differentiated Mesoamerican and Andean gene pools, we confirmed 2 independent domestications from genetic pools that diverged before human colonization. Less than 10% of the 74 Mb of sequence putatively involved in domestication was shared by the two domestication events. We identified a set of genes linked with increased leaf and seed size and combined these results with quantitative trait locus data from Mesoamerican cultivars. Genes affected by domestication may be useful for genomics-enabled crop improvement. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/ng.3008) contains supplementary material, which is available to authorized users. Nature Publishing Group US 2014-06-08 2014 /pmc/articles/PMC7048698/ /pubmed/24908249 http://dx.doi.org/10.1038/ng.3008 Text en © The Author(s) 2014 This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/.
spellingShingle Article
Schmutz, Jeremy
McClean, Phillip E
Mamidi, Sujan
Wu, G Albert
Cannon, Steven B
Grimwood, Jane
Jenkins, Jerry
Shu, Shengqiang
Song, Qijian
Chavarro, Carolina
Torres-Torres, Mirayda
Geffroy, Valerie
Moghaddam, Samira Mafi
Gao, Dongying
Abernathy, Brian
Barry, Kerrie
Blair, Matthew
Brick, Mark A
Chovatia, Mansi
Gepts, Paul
Goodstein, David M
Gonzales, Michael
Hellsten, Uffe
Hyten, David L
Jia, Gaofeng
Kelly, James D
Kudrna, Dave
Lee, Rian
Richard, Manon M S
Miklas, Phillip N
Osorno, Juan M
Rodrigues, Josiane
Thareau, Vincent
Urrea, Carlos A
Wang, Mei
Yu, Yeisoo
Zhang, Ming
Wing, Rod A
Cregan, Perry B
Rokhsar, Daniel S
Jackson, Scott A
A reference genome for common bean and genome-wide analysis of dual domestications
title A reference genome for common bean and genome-wide analysis of dual domestications
title_full A reference genome for common bean and genome-wide analysis of dual domestications
title_fullStr A reference genome for common bean and genome-wide analysis of dual domestications
title_full_unstemmed A reference genome for common bean and genome-wide analysis of dual domestications
title_short A reference genome for common bean and genome-wide analysis of dual domestications
title_sort reference genome for common bean and genome-wide analysis of dual domestications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7048698/
https://www.ncbi.nlm.nih.gov/pubmed/24908249
http://dx.doi.org/10.1038/ng.3008
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