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A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes

Aeschynomene evenia has emerged as a new model legume for the deciphering of the molecular mechanisms of an alternative symbiotic process that is independent of the Nod factors. Whereas most of the research on nitrogen-fixing symbiosis, legume genetics and genomics has so far focused on Galegoid and...

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Autores principales: Chaintreuil, Clémence, Rivallan, Ronan, Bertioli, David J., Klopp, Christophe, Gouzy, Jérôme, Courtois, Brigitte, Leleux, Philippe, Martin, Guillaume, Rami, Jean-François, Gully, Djamel, Parrinello, Hugues, Séverac, Dany, Patrel, Delphine, Fardoux, Joël, Ribière, William, Boursot, Marc, Cartieaux, Fabienne, Czernic, Pierre, Ratet, Pascal, Mournet, Pierre, Giraud, Eric, Arrighi, Jean-François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4991833/
https://www.ncbi.nlm.nih.gov/pubmed/27298380
http://dx.doi.org/10.1093/dnares/dsw020
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author Chaintreuil, Clémence
Rivallan, Ronan
Bertioli, David J.
Klopp, Christophe
Gouzy, Jérôme
Courtois, Brigitte
Leleux, Philippe
Martin, Guillaume
Rami, Jean-François
Gully, Djamel
Parrinello, Hugues
Séverac, Dany
Patrel, Delphine
Fardoux, Joël
Ribière, William
Boursot, Marc
Cartieaux, Fabienne
Czernic, Pierre
Ratet, Pascal
Mournet, Pierre
Giraud, Eric
Arrighi, Jean-François
author_facet Chaintreuil, Clémence
Rivallan, Ronan
Bertioli, David J.
Klopp, Christophe
Gouzy, Jérôme
Courtois, Brigitte
Leleux, Philippe
Martin, Guillaume
Rami, Jean-François
Gully, Djamel
Parrinello, Hugues
Séverac, Dany
Patrel, Delphine
Fardoux, Joël
Ribière, William
Boursot, Marc
Cartieaux, Fabienne
Czernic, Pierre
Ratet, Pascal
Mournet, Pierre
Giraud, Eric
Arrighi, Jean-François
author_sort Chaintreuil, Clémence
collection PubMed
description Aeschynomene evenia has emerged as a new model legume for the deciphering of the molecular mechanisms of an alternative symbiotic process that is independent of the Nod factors. Whereas most of the research on nitrogen-fixing symbiosis, legume genetics and genomics has so far focused on Galegoid and Phaseolid legumes, A. evenia falls in the more basal and understudied Dalbergioid clade along with peanut (Arachis hypogaea). To provide insights into the symbiotic genes content and the structure of the A. evenia genome, we established a gene-based genetic map for this species. Firstly, an RNAseq analysis was performed on the two parental lines selected to generate a F(2) mapping population. The transcriptomic data were used to develop molecular markers and they allowed the identification of most symbiotic genes. The resulting map comprised 364 markers arranged in 10 linkage groups (2n = 20). A comparative analysis with the sequenced genomes of Arachis duranensis and A. ipaensis, the diploid ancestors of peanut, indicated blocks of conserved macrosynteny. Altogether, these results provided important clues regarding the evolution of symbiotic genes in a Nod factor-independent context. They provide a basis for a genome sequencing project and pave the way for forward genetic analysis of symbiosis in A. evenia.
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spelling pubmed-49918332016-08-22 A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes Chaintreuil, Clémence Rivallan, Ronan Bertioli, David J. Klopp, Christophe Gouzy, Jérôme Courtois, Brigitte Leleux, Philippe Martin, Guillaume Rami, Jean-François Gully, Djamel Parrinello, Hugues Séverac, Dany Patrel, Delphine Fardoux, Joël Ribière, William Boursot, Marc Cartieaux, Fabienne Czernic, Pierre Ratet, Pascal Mournet, Pierre Giraud, Eric Arrighi, Jean-François DNA Res Full Papers Aeschynomene evenia has emerged as a new model legume for the deciphering of the molecular mechanisms of an alternative symbiotic process that is independent of the Nod factors. Whereas most of the research on nitrogen-fixing symbiosis, legume genetics and genomics has so far focused on Galegoid and Phaseolid legumes, A. evenia falls in the more basal and understudied Dalbergioid clade along with peanut (Arachis hypogaea). To provide insights into the symbiotic genes content and the structure of the A. evenia genome, we established a gene-based genetic map for this species. Firstly, an RNAseq analysis was performed on the two parental lines selected to generate a F(2) mapping population. The transcriptomic data were used to develop molecular markers and they allowed the identification of most symbiotic genes. The resulting map comprised 364 markers arranged in 10 linkage groups (2n = 20). A comparative analysis with the sequenced genomes of Arachis duranensis and A. ipaensis, the diploid ancestors of peanut, indicated blocks of conserved macrosynteny. Altogether, these results provided important clues regarding the evolution of symbiotic genes in a Nod factor-independent context. They provide a basis for a genome sequencing project and pave the way for forward genetic analysis of symbiosis in A. evenia. Oxford University Press 2016-08 2016-06-13 /pmc/articles/PMC4991833/ /pubmed/27298380 http://dx.doi.org/10.1093/dnares/dsw020 Text en © The Author 2016. Published by Oxford University Press on behalf of Kazusa DNA Research Institute. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Full Papers
Chaintreuil, Clémence
Rivallan, Ronan
Bertioli, David J.
Klopp, Christophe
Gouzy, Jérôme
Courtois, Brigitte
Leleux, Philippe
Martin, Guillaume
Rami, Jean-François
Gully, Djamel
Parrinello, Hugues
Séverac, Dany
Patrel, Delphine
Fardoux, Joël
Ribière, William
Boursot, Marc
Cartieaux, Fabienne
Czernic, Pierre
Ratet, Pascal
Mournet, Pierre
Giraud, Eric
Arrighi, Jean-François
A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
title A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
title_full A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
title_fullStr A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
title_full_unstemmed A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
title_short A gene-based map of the Nod factor-independent Aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
title_sort gene-based map of the nod factor-independent aeschynomene evenia sheds new light on the evolution of nodulation and legume genomes
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4991833/
https://www.ncbi.nlm.nih.gov/pubmed/27298380
http://dx.doi.org/10.1093/dnares/dsw020
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