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Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History

Maize (Zea mays L.) is one of the most important cereal crops and a model for the study of genetics, evolution, and domestication. To better understand maize genome organization and to build a framework for genome sequencing, we constructed a sequence-ready fingerprinted contig-based physical map th...

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Autores principales: Wei, Fusheng, Coe, Ed, Nelson, William, Bharti, Arvind K, Engler, Fred, Butler, Ed, Kim, HyeRan, Goicoechea, Jose Luis, Chen, Mingsheng, Lee, Seunghee, Fuks, Galina, Sanchez-Villeda, Hector, Schroeder, Steven, Fang, Zhiwei, McMullen, Michael, Davis, Georgia, Bowers, John E, Paterson, Andrew H, Schaeffer, Mary, Gardiner, Jack, Cone, Karen, Messing, Joachim, Soderlund, Carol, Wing, Rod A
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934398/
https://www.ncbi.nlm.nih.gov/pubmed/17658954
http://dx.doi.org/10.1371/journal.pgen.0030123
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author Wei, Fusheng
Coe, Ed
Nelson, William
Bharti, Arvind K
Engler, Fred
Butler, Ed
Kim, HyeRan
Goicoechea, Jose Luis
Chen, Mingsheng
Lee, Seunghee
Fuks, Galina
Sanchez-Villeda, Hector
Schroeder, Steven
Fang, Zhiwei
McMullen, Michael
Davis, Georgia
Bowers, John E
Paterson, Andrew H
Schaeffer, Mary
Gardiner, Jack
Cone, Karen
Messing, Joachim
Soderlund, Carol
Wing, Rod A
author_facet Wei, Fusheng
Coe, Ed
Nelson, William
Bharti, Arvind K
Engler, Fred
Butler, Ed
Kim, HyeRan
Goicoechea, Jose Luis
Chen, Mingsheng
Lee, Seunghee
Fuks, Galina
Sanchez-Villeda, Hector
Schroeder, Steven
Fang, Zhiwei
McMullen, Michael
Davis, Georgia
Bowers, John E
Paterson, Andrew H
Schaeffer, Mary
Gardiner, Jack
Cone, Karen
Messing, Joachim
Soderlund, Carol
Wing, Rod A
author_sort Wei, Fusheng
collection PubMed
description Maize (Zea mays L.) is one of the most important cereal crops and a model for the study of genetics, evolution, and domestication. To better understand maize genome organization and to build a framework for genome sequencing, we constructed a sequence-ready fingerprinted contig-based physical map that covers 93.5% of the genome, of which 86.1% is aligned to the genetic map. The fingerprinted contig map contains 25,908 genic markers that enabled us to align nearly 73% of the anchored maize genome to the rice genome. The distribution pattern of expressed sequence tags correlates to that of recombination. In collinear regions, 1 kb in rice corresponds to an average of 3.2 kb in maize, yet maize has a 6-fold genome size expansion. This can be explained by the fact that most rice regions correspond to two regions in maize as a result of its recent polyploid origin. Inversions account for the majority of chromosome structural variations during subsequent maize diploidization. We also find clear evidence of ancient genome duplication predating the divergence of the progenitors of maize and rice. Reconstructing the paleoethnobotany of the maize genome indicates that the progenitors of modern maize contained ten chromosomes.
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spelling pubmed-19343982007-07-28 Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History Wei, Fusheng Coe, Ed Nelson, William Bharti, Arvind K Engler, Fred Butler, Ed Kim, HyeRan Goicoechea, Jose Luis Chen, Mingsheng Lee, Seunghee Fuks, Galina Sanchez-Villeda, Hector Schroeder, Steven Fang, Zhiwei McMullen, Michael Davis, Georgia Bowers, John E Paterson, Andrew H Schaeffer, Mary Gardiner, Jack Cone, Karen Messing, Joachim Soderlund, Carol Wing, Rod A PLoS Genet Research Article Maize (Zea mays L.) is one of the most important cereal crops and a model for the study of genetics, evolution, and domestication. To better understand maize genome organization and to build a framework for genome sequencing, we constructed a sequence-ready fingerprinted contig-based physical map that covers 93.5% of the genome, of which 86.1% is aligned to the genetic map. The fingerprinted contig map contains 25,908 genic markers that enabled us to align nearly 73% of the anchored maize genome to the rice genome. The distribution pattern of expressed sequence tags correlates to that of recombination. In collinear regions, 1 kb in rice corresponds to an average of 3.2 kb in maize, yet maize has a 6-fold genome size expansion. This can be explained by the fact that most rice regions correspond to two regions in maize as a result of its recent polyploid origin. Inversions account for the majority of chromosome structural variations during subsequent maize diploidization. We also find clear evidence of ancient genome duplication predating the divergence of the progenitors of maize and rice. Reconstructing the paleoethnobotany of the maize genome indicates that the progenitors of modern maize contained ten chromosomes. Public Library of Science 2007-07 2007-07-20 /pmc/articles/PMC1934398/ /pubmed/17658954 http://dx.doi.org/10.1371/journal.pgen.0030123 Text en © 2007 https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Wei, Fusheng
Coe, Ed
Nelson, William
Bharti, Arvind K
Engler, Fred
Butler, Ed
Kim, HyeRan
Goicoechea, Jose Luis
Chen, Mingsheng
Lee, Seunghee
Fuks, Galina
Sanchez-Villeda, Hector
Schroeder, Steven
Fang, Zhiwei
McMullen, Michael
Davis, Georgia
Bowers, John E
Paterson, Andrew H
Schaeffer, Mary
Gardiner, Jack
Cone, Karen
Messing, Joachim
Soderlund, Carol
Wing, Rod A
Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History
title Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History
title_full Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History
title_fullStr Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History
title_full_unstemmed Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History
title_short Physical and Genetic Structure of the Maize Genome Reflects Its Complex Evolutionary History
title_sort physical and genetic structure of the maize genome reflects its complex evolutionary history
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934398/
https://www.ncbi.nlm.nih.gov/pubmed/17658954
http://dx.doi.org/10.1371/journal.pgen.0030123
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