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New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides

BACKGROUND: Several studies suggested that the diploid ancestor of the B genome of tetraploid and hexaploid wheat species belongs to the Sitopsis section, having Aegilops speltoides (SS, 2n = 14) as the closest identified relative. However molecular relationships based on genomic sequence comparison...

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Autores principales: Salse, Jérome, Chagué, Véronique, Bolot, Stéphanie, Magdelenat, Ghislaine, Huneau, Cécile, Pont, Caroline, Belcram, Harry, Couloux, Arnaud, Gardais, Soazic, Evrard, Aurélie, Segurens, Béatrice, Charles, Mathieu, Ravel, Catherine, Samain, Sylvie, Charmet, Gilles, Boudet, Nathalie, Chalhoub, Boulos
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2612700/
https://www.ncbi.nlm.nih.gov/pubmed/19032732
http://dx.doi.org/10.1186/1471-2164-9-555
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author Salse, Jérome
Chagué, Véronique
Bolot, Stéphanie
Magdelenat, Ghislaine
Huneau, Cécile
Pont, Caroline
Belcram, Harry
Couloux, Arnaud
Gardais, Soazic
Evrard, Aurélie
Segurens, Béatrice
Charles, Mathieu
Ravel, Catherine
Samain, Sylvie
Charmet, Gilles
Boudet, Nathalie
Chalhoub, Boulos
author_facet Salse, Jérome
Chagué, Véronique
Bolot, Stéphanie
Magdelenat, Ghislaine
Huneau, Cécile
Pont, Caroline
Belcram, Harry
Couloux, Arnaud
Gardais, Soazic
Evrard, Aurélie
Segurens, Béatrice
Charles, Mathieu
Ravel, Catherine
Samain, Sylvie
Charmet, Gilles
Boudet, Nathalie
Chalhoub, Boulos
author_sort Salse, Jérome
collection PubMed
description BACKGROUND: Several studies suggested that the diploid ancestor of the B genome of tetraploid and hexaploid wheat species belongs to the Sitopsis section, having Aegilops speltoides (SS, 2n = 14) as the closest identified relative. However molecular relationships based on genomic sequence comparison, including both coding and non-coding DNA, have never been investigated. In an attempt to clarify these relationships, we compared, in this study, sequences of the Storage Protein Activator (SPA) locus region of the S genome of Ae. speltoides (2n = 14) to that of the A, B and D genomes co-resident in the hexaploid wheat species (Triticum aestivum, AABBDD, 2n = 42). RESULTS: Four BAC clones, spanning the SPA locus of respectively the A, B, D and S genomes, were isolated and sequenced. Orthologous genomic regions were identified as delimited by shared non-transposable elements and non-coding sequences surrounding the SPA gene and correspond to 35 268, 22 739, 43 397 and 53 919 bp for the A, B, D and S genomes, respectively. Sequence length discrepancies within and outside the SPA orthologous regions are the result of non-shared transposable elements (TE) insertions, all of which inserted after the progenitors of the four genomes divergence. CONCLUSION: On the basis of conserved sequence length as well as identity of the shared non-TE regions and the SPA coding sequence, Ae speltoides appears to be more evolutionary related to the B genome of T. aestivum than the A and D genomes. However, the differential insertions of TEs, none of which are conserved between the two genomes led to the conclusion that the S genome of Ae. speltoides has diverged very early from the progenitor of the B genome which remains to be identified.
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spelling pubmed-26127002008-12-31 New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides Salse, Jérome Chagué, Véronique Bolot, Stéphanie Magdelenat, Ghislaine Huneau, Cécile Pont, Caroline Belcram, Harry Couloux, Arnaud Gardais, Soazic Evrard, Aurélie Segurens, Béatrice Charles, Mathieu Ravel, Catherine Samain, Sylvie Charmet, Gilles Boudet, Nathalie Chalhoub, Boulos BMC Genomics Research Article BACKGROUND: Several studies suggested that the diploid ancestor of the B genome of tetraploid and hexaploid wheat species belongs to the Sitopsis section, having Aegilops speltoides (SS, 2n = 14) as the closest identified relative. However molecular relationships based on genomic sequence comparison, including both coding and non-coding DNA, have never been investigated. In an attempt to clarify these relationships, we compared, in this study, sequences of the Storage Protein Activator (SPA) locus region of the S genome of Ae. speltoides (2n = 14) to that of the A, B and D genomes co-resident in the hexaploid wheat species (Triticum aestivum, AABBDD, 2n = 42). RESULTS: Four BAC clones, spanning the SPA locus of respectively the A, B, D and S genomes, were isolated and sequenced. Orthologous genomic regions were identified as delimited by shared non-transposable elements and non-coding sequences surrounding the SPA gene and correspond to 35 268, 22 739, 43 397 and 53 919 bp for the A, B, D and S genomes, respectively. Sequence length discrepancies within and outside the SPA orthologous regions are the result of non-shared transposable elements (TE) insertions, all of which inserted after the progenitors of the four genomes divergence. CONCLUSION: On the basis of conserved sequence length as well as identity of the shared non-TE regions and the SPA coding sequence, Ae speltoides appears to be more evolutionary related to the B genome of T. aestivum than the A and D genomes. However, the differential insertions of TEs, none of which are conserved between the two genomes led to the conclusion that the S genome of Ae. speltoides has diverged very early from the progenitor of the B genome which remains to be identified. BioMed Central 2008-11-25 /pmc/articles/PMC2612700/ /pubmed/19032732 http://dx.doi.org/10.1186/1471-2164-9-555 Text en Copyright © 2008 Salse 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 Article
Salse, Jérome
Chagué, Véronique
Bolot, Stéphanie
Magdelenat, Ghislaine
Huneau, Cécile
Pont, Caroline
Belcram, Harry
Couloux, Arnaud
Gardais, Soazic
Evrard, Aurélie
Segurens, Béatrice
Charles, Mathieu
Ravel, Catherine
Samain, Sylvie
Charmet, Gilles
Boudet, Nathalie
Chalhoub, Boulos
New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides
title New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides
title_full New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides
title_fullStr New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides
title_full_unstemmed New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides
title_short New insights into the origin of the B genome of hexaploid wheat: Evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides
title_sort new insights into the origin of the b genome of hexaploid wheat: evolutionary relationships at the spa genomic region with the s genome of the diploid relative aegilops speltoides
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2612700/
https://www.ncbi.nlm.nih.gov/pubmed/19032732
http://dx.doi.org/10.1186/1471-2164-9-555
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