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A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat

BACKGROUND: As for other major crops, achieving a complete wheat genome sequence is essential for the application of genomics to breeding new and improved varieties. To overcome the complexities of the large, highly repetitive and hexaploid wheat genome, the International Wheat Genome Sequencing Con...

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Autores principales: Philippe, Romain, Paux, Etienne, Bertin, Isabelle, Sourdille, Pierre, Choulet, Fréderic, Laugier, Christel, Šimková, Hana, Šafář, Jan, Bellec, Arnaud, Vautrin, Sonia, Frenkel, Zeev, Cattonaro, Federica, Magni, Federica, Scalabrin, Simone, Martis, Mihaela M, Mayer, Klaus FX, Korol, Abraham, Bergès, Hélène, Doležel, Jaroslav, Feuillet, Catherine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4054855/
https://www.ncbi.nlm.nih.gov/pubmed/23800011
http://dx.doi.org/10.1186/gb-2013-14-6-r64
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author Philippe, Romain
Paux, Etienne
Bertin, Isabelle
Sourdille, Pierre
Choulet, Fréderic
Laugier, Christel
Šimková, Hana
Šafář, Jan
Bellec, Arnaud
Vautrin, Sonia
Frenkel, Zeev
Cattonaro, Federica
Magni, Federica
Scalabrin, Simone
Martis, Mihaela M
Mayer, Klaus FX
Korol, Abraham
Bergès, Hélène
Doležel, Jaroslav
Feuillet, Catherine
author_facet Philippe, Romain
Paux, Etienne
Bertin, Isabelle
Sourdille, Pierre
Choulet, Fréderic
Laugier, Christel
Šimková, Hana
Šafář, Jan
Bellec, Arnaud
Vautrin, Sonia
Frenkel, Zeev
Cattonaro, Federica
Magni, Federica
Scalabrin, Simone
Martis, Mihaela M
Mayer, Klaus FX
Korol, Abraham
Bergès, Hélène
Doležel, Jaroslav
Feuillet, Catherine
author_sort Philippe, Romain
collection PubMed
description BACKGROUND: As for other major crops, achieving a complete wheat genome sequence is essential for the application of genomics to breeding new and improved varieties. To overcome the complexities of the large, highly repetitive and hexaploid wheat genome, the International Wheat Genome Sequencing Consortium established a chromosome-based strategy that was validated by the construction of the physical map of chromosome 3B. Here, we present improved strategies for the construction of highly integrated and ordered wheat physical maps, using chromosome 1BL as a template, and illustrate their potential for evolutionary studies and map-based cloning. RESULTS: Using a combination of novel high throughput marker assays and an assembly program, we developed a high quality physical map representing 93% of wheat chromosome 1BL, anchored and ordered with 5,489 markers including 1,161 genes. Analysis of the gene space organization and evolution revealed that gene distribution and conservation along the chromosome results from the superimposition of the ancestral grass and recent wheat evolutionary patterns, leading to a peak of synteny in the central part of the chromosome arm and an increased density of non-collinear genes towards the telomere. With a density of about 11 markers per Mb, the 1BL physical map provides 916 markers, including 193 genes, for fine mapping the 40 QTLs mapped on this chromosome. CONCLUSIONS: Here, we demonstrate that high marker density physical maps can be developed in complex genomes such as wheat to accelerate map-based cloning, gain new insights into genome evolution, and provide a foundation for reference sequencing.
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spelling pubmed-40548552014-06-13 A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat Philippe, Romain Paux, Etienne Bertin, Isabelle Sourdille, Pierre Choulet, Fréderic Laugier, Christel Šimková, Hana Šafář, Jan Bellec, Arnaud Vautrin, Sonia Frenkel, Zeev Cattonaro, Federica Magni, Federica Scalabrin, Simone Martis, Mihaela M Mayer, Klaus FX Korol, Abraham Bergès, Hélène Doležel, Jaroslav Feuillet, Catherine Genome Biol Research BACKGROUND: As for other major crops, achieving a complete wheat genome sequence is essential for the application of genomics to breeding new and improved varieties. To overcome the complexities of the large, highly repetitive and hexaploid wheat genome, the International Wheat Genome Sequencing Consortium established a chromosome-based strategy that was validated by the construction of the physical map of chromosome 3B. Here, we present improved strategies for the construction of highly integrated and ordered wheat physical maps, using chromosome 1BL as a template, and illustrate their potential for evolutionary studies and map-based cloning. RESULTS: Using a combination of novel high throughput marker assays and an assembly program, we developed a high quality physical map representing 93% of wheat chromosome 1BL, anchored and ordered with 5,489 markers including 1,161 genes. Analysis of the gene space organization and evolution revealed that gene distribution and conservation along the chromosome results from the superimposition of the ancestral grass and recent wheat evolutionary patterns, leading to a peak of synteny in the central part of the chromosome arm and an increased density of non-collinear genes towards the telomere. With a density of about 11 markers per Mb, the 1BL physical map provides 916 markers, including 193 genes, for fine mapping the 40 QTLs mapped on this chromosome. CONCLUSIONS: Here, we demonstrate that high marker density physical maps can be developed in complex genomes such as wheat to accelerate map-based cloning, gain new insights into genome evolution, and provide a foundation for reference sequencing. BioMed Central 2013 2013-06-25 /pmc/articles/PMC4054855/ /pubmed/23800011 http://dx.doi.org/10.1186/gb-2013-14-6-r64 Text en Copyright © 2013 Philippe 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
Philippe, Romain
Paux, Etienne
Bertin, Isabelle
Sourdille, Pierre
Choulet, Fréderic
Laugier, Christel
Šimková, Hana
Šafář, Jan
Bellec, Arnaud
Vautrin, Sonia
Frenkel, Zeev
Cattonaro, Federica
Magni, Federica
Scalabrin, Simone
Martis, Mihaela M
Mayer, Klaus FX
Korol, Abraham
Bergès, Hélène
Doležel, Jaroslav
Feuillet, Catherine
A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat
title A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat
title_full A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat
title_fullStr A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat
title_full_unstemmed A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat
title_short A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat
title_sort high density physical map of chromosome 1bl supports evolutionary studies, map-based cloning and sequencing in wheat
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4054855/
https://www.ncbi.nlm.nih.gov/pubmed/23800011
http://dx.doi.org/10.1186/gb-2013-14-6-r64
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