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The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution

BACKGROUND: The wheat genome sequence is an essential tool for advanced genomic research and improvements. The generation of a high-quality wheat genome sequence is challenging due to its complex 17 Gb polyploid genome. To overcome these difficulties, sequencing through the construction of BAC-based...

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Autores principales: Raats, Dina, Frenkel, Zeev, Krugman, Tamar, Dodek, Itay, Sela, Hanan, Šimková, Hana, Magni, Federica, Cattonaro, Federica, Vautrin, Sonia, Bergès, Hélène, Wicker, Thomas, Keller, Beat, Leroy, Philippe, Philippe, Romain, Paux, Etienne, Doležel, Jaroslav, Feuillet, Catherine, Korol, Abraham, Fahima, Tzion
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053865/
https://www.ncbi.nlm.nih.gov/pubmed/24359668
http://dx.doi.org/10.1186/gb-2013-14-12-r138
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author Raats, Dina
Frenkel, Zeev
Krugman, Tamar
Dodek, Itay
Sela, Hanan
Šimková, Hana
Magni, Federica
Cattonaro, Federica
Vautrin, Sonia
Bergès, Hélène
Wicker, Thomas
Keller, Beat
Leroy, Philippe
Philippe, Romain
Paux, Etienne
Doležel, Jaroslav
Feuillet, Catherine
Korol, Abraham
Fahima, Tzion
author_facet Raats, Dina
Frenkel, Zeev
Krugman, Tamar
Dodek, Itay
Sela, Hanan
Šimková, Hana
Magni, Federica
Cattonaro, Federica
Vautrin, Sonia
Bergès, Hélène
Wicker, Thomas
Keller, Beat
Leroy, Philippe
Philippe, Romain
Paux, Etienne
Doležel, Jaroslav
Feuillet, Catherine
Korol, Abraham
Fahima, Tzion
author_sort Raats, Dina
collection PubMed
description BACKGROUND: The wheat genome sequence is an essential tool for advanced genomic research and improvements. The generation of a high-quality wheat genome sequence is challenging due to its complex 17 Gb polyploid genome. To overcome these difficulties, sequencing through the construction of BAC-based physical maps of individual chromosomes is employed by the wheat genomics community. Here, we present the construction of the first comprehensive physical map of chromosome 1BS, and illustrate its unique gene space organization and evolution. RESULTS: Fingerprinted BAC clones were assembled into 57 long scaffolds, anchored and ordered with 2,438 markers, covering 83% of chromosome 1BS. The BAC-based chromosome 1BS physical map and gene order of the orthologous regions of model grass species were consistent, providing strong support for the reliability of the chromosome 1BS assembly. The gene space for chromosome 1BS spans the entire length of the chromosome arm, with 76% of the genes organized in small gene islands, accompanied by a two-fold increase in gene density from the centromere to the telomere. CONCLUSIONS: This study provides new evidence on common and chromosome-specific features in the organization and evolution of the wheat genome, including a non-uniform distribution of gene density along the centromere-telomere axis, abundance of non-syntenic genes, the degree of colinearity with other grass genomes and a non-uniform size expansion along the centromere-telomere axis compared with other model cereal genomes. The high-quality physical map constructed in this study provides a solid basis for the assembly of a reference sequence of chromosome 1BS and for breeding applications.
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spelling pubmed-40538652014-06-12 The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution Raats, Dina Frenkel, Zeev Krugman, Tamar Dodek, Itay Sela, Hanan Šimková, Hana Magni, Federica Cattonaro, Federica Vautrin, Sonia Bergès, Hélène Wicker, Thomas Keller, Beat Leroy, Philippe Philippe, Romain Paux, Etienne Doležel, Jaroslav Feuillet, Catherine Korol, Abraham Fahima, Tzion Genome Biol Research BACKGROUND: The wheat genome sequence is an essential tool for advanced genomic research and improvements. The generation of a high-quality wheat genome sequence is challenging due to its complex 17 Gb polyploid genome. To overcome these difficulties, sequencing through the construction of BAC-based physical maps of individual chromosomes is employed by the wheat genomics community. Here, we present the construction of the first comprehensive physical map of chromosome 1BS, and illustrate its unique gene space organization and evolution. RESULTS: Fingerprinted BAC clones were assembled into 57 long scaffolds, anchored and ordered with 2,438 markers, covering 83% of chromosome 1BS. The BAC-based chromosome 1BS physical map and gene order of the orthologous regions of model grass species were consistent, providing strong support for the reliability of the chromosome 1BS assembly. The gene space for chromosome 1BS spans the entire length of the chromosome arm, with 76% of the genes organized in small gene islands, accompanied by a two-fold increase in gene density from the centromere to the telomere. CONCLUSIONS: This study provides new evidence on common and chromosome-specific features in the organization and evolution of the wheat genome, including a non-uniform distribution of gene density along the centromere-telomere axis, abundance of non-syntenic genes, the degree of colinearity with other grass genomes and a non-uniform size expansion along the centromere-telomere axis compared with other model cereal genomes. The high-quality physical map constructed in this study provides a solid basis for the assembly of a reference sequence of chromosome 1BS and for breeding applications. BioMed Central 2013 2013-12-20 /pmc/articles/PMC4053865/ /pubmed/24359668 http://dx.doi.org/10.1186/gb-2013-14-12-r138 Text en Copyright © 2013 Raats et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Raats, Dina
Frenkel, Zeev
Krugman, Tamar
Dodek, Itay
Sela, Hanan
Šimková, Hana
Magni, Federica
Cattonaro, Federica
Vautrin, Sonia
Bergès, Hélène
Wicker, Thomas
Keller, Beat
Leroy, Philippe
Philippe, Romain
Paux, Etienne
Doležel, Jaroslav
Feuillet, Catherine
Korol, Abraham
Fahima, Tzion
The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution
title The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution
title_full The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution
title_fullStr The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution
title_full_unstemmed The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution
title_short The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution
title_sort physical map of wheat chromosome 1bs provides insights into its gene space organization and evolution
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053865/
https://www.ncbi.nlm.nih.gov/pubmed/24359668
http://dx.doi.org/10.1186/gb-2013-14-12-r138
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