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Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia

Tropical aquatic species of the legume genus Aeschynomene are stem- and root-nodulated by bradyrhizobia strains that exhibit atypical features such as photosynthetic capacities or the use of a nod gene-dependent (ND) or a nod gene-independent (NI) pathway to enter into symbiosis with legumes. In thi...

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Autores principales: Mornico, Damien, Miché, Lucie, Béna, Gilles, Nouwen, Nico, Verméglio, André, Vallenet, David, Smith, Alexander A.T., Giraud, Eric, Médigue, Claudine, Moulin, Lionel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3899966/
https://www.ncbi.nlm.nih.gov/pubmed/24704842
http://dx.doi.org/10.3390/genes3010035
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author Mornico, Damien
Miché, Lucie
Béna, Gilles
Nouwen, Nico
Verméglio, André
Vallenet, David
Smith, Alexander A.T.
Giraud, Eric
Médigue, Claudine
Moulin, Lionel
author_facet Mornico, Damien
Miché, Lucie
Béna, Gilles
Nouwen, Nico
Verméglio, André
Vallenet, David
Smith, Alexander A.T.
Giraud, Eric
Médigue, Claudine
Moulin, Lionel
author_sort Mornico, Damien
collection PubMed
description Tropical aquatic species of the legume genus Aeschynomene are stem- and root-nodulated by bradyrhizobia strains that exhibit atypical features such as photosynthetic capacities or the use of a nod gene-dependent (ND) or a nod gene-independent (NI) pathway to enter into symbiosis with legumes. In this study we used a comparative genomics approach on nine Aeschynomene symbionts representative of their phylogenetic diversity. We produced draft genomes of bradyrhizobial strains representing different phenotypes: five NI photosynthetic strains (STM3809, ORS375, STM3847, STM4509 and STM4523) in addition to the previously sequenced ORS278 and BTAi1 genomes, one photosynthetic strain ORS285 hosting both ND and NI symbiotic systems, and one NI non-photosynthetic strain (STM3843). Comparative genomics allowed us to infer the core, pan and dispensable genomes of Aeschynomene bradyrhizobia, and to detect specific genes and their location in Genomic Islands (GI). Specific gene sets linked to photosynthetic and NI/ND abilities were identified, and are currently being studied in functional analyses.
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spelling pubmed-38999662014-03-26 Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia Mornico, Damien Miché, Lucie Béna, Gilles Nouwen, Nico Verméglio, André Vallenet, David Smith, Alexander A.T. Giraud, Eric Médigue, Claudine Moulin, Lionel Genes (Basel) Article Tropical aquatic species of the legume genus Aeschynomene are stem- and root-nodulated by bradyrhizobia strains that exhibit atypical features such as photosynthetic capacities or the use of a nod gene-dependent (ND) or a nod gene-independent (NI) pathway to enter into symbiosis with legumes. In this study we used a comparative genomics approach on nine Aeschynomene symbionts representative of their phylogenetic diversity. We produced draft genomes of bradyrhizobial strains representing different phenotypes: five NI photosynthetic strains (STM3809, ORS375, STM3847, STM4509 and STM4523) in addition to the previously sequenced ORS278 and BTAi1 genomes, one photosynthetic strain ORS285 hosting both ND and NI symbiotic systems, and one NI non-photosynthetic strain (STM3843). Comparative genomics allowed us to infer the core, pan and dispensable genomes of Aeschynomene bradyrhizobia, and to detect specific genes and their location in Genomic Islands (GI). Specific gene sets linked to photosynthetic and NI/ND abilities were identified, and are currently being studied in functional analyses. MDPI 2011-12-21 /pmc/articles/PMC3899966/ /pubmed/24704842 http://dx.doi.org/10.3390/genes3010035 Text en © 2012 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Mornico, Damien
Miché, Lucie
Béna, Gilles
Nouwen, Nico
Verméglio, André
Vallenet, David
Smith, Alexander A.T.
Giraud, Eric
Médigue, Claudine
Moulin, Lionel
Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia
title Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia
title_full Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia
title_fullStr Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia
title_full_unstemmed Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia
title_short Comparative Genomics of Aeschynomene Symbionts: Insights into the Ecological Lifestyle of Nod-Independent Photosynthetic Bradyrhizobia
title_sort comparative genomics of aeschynomene symbionts: insights into the ecological lifestyle of nod-independent photosynthetic bradyrhizobia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3899966/
https://www.ncbi.nlm.nih.gov/pubmed/24704842
http://dx.doi.org/10.3390/genes3010035
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