Different species of Bradyrhizobium from symbiovars genistearum and retamae nodulate the endemic Retama dasycarpa in the High Atlas Mountains

Author:

Lamrabet Mouad1,Chaddad Zohra1,Bouhnik Omar1,Alami Soufiane1,Kaddouri Kaoutar1,Bennis Meryeme1,Lamin Hanane1,Mnasri Bacem2ORCID,Bourgerie Sylvain3,Morabito Domenico3,Abdelmoumen Hanaa1,Bedmar Eulogio J4,Missbah El Idrissi Mustapha1ORCID

Affiliation:

1. Centre de Biotechnologies végétales et microbiennes, Biodiversité et Environnement, Faculty of Sciences, Mohammed V University in Rabat , 4 Avenue Ibn Battouta, Agdal, Rabat 10080 , Morocco

2. Laboratory of Legumes. Centre of Biotechnology, Technopol of Borj-Cédria , BP 901, 2050 Hammam-lif, Tunisia

3. Laboratoire de Biologie des Ligneux et des Grandes Cultures (LBLGC EA1207) – INRAe Orléans, Equipe ARCHE (INRAe, USC1328) , rue de Chartres - BP6759 - 45067, ORLEANS Cedex 2, France

4. Department of Soil Microbiology and Symbiotic Systems, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas (CSIC) , E-419, C/ Professor Albareda, 1, 18008 Granada, Spain

Abstract

Abstract Retama dasycarpa is an endemic Retama species native to the cold semi-arid bioclimates of the High Atlas Mountains in Morocco. In this work, we analyzed the diversity of the microsymbionts nodulating this plant and their different phenotypic and symbiotic characteristics. Phylogenetic analysis of the 16S rRNA gene revealed that the tested isolates clustered in the Bradyrhizobium genus. Multilocus sequence analyses of four housekeeping genes (recA, gyrB, glnII and atpD) for 12 selected strains grouped them into four clusters close to B. lupini USDA 3051T, B. frederickii CNPSo 3446T, B. valentinum LmjM3T and B. retamae Ro19T. The individual phylogenies of these core genes and the symbiotic genes nodC, nodA and nifH were congruent. These isolates showed a broad host range, being able to nodulate different legume hosts, such as R. sphaerocarpa, R. monosperma, Lupinus luteus, Cytisus grandiflorus andChamaecytisus albidus, but not Phaseolus vulgaris or Glycine max. They all had a similar metabolic capacity, using the majority of the carbohydrates and amino acids tested as sole sources of carbon and nitrogen. Furthermore, out of the 12 selected strains, some displayed plant growth-promoting features, with six of them solubilizing phosphate and three of them producing siderophores. The present work provides, for the first time, a detailed description about the microsymbionts associated with the endemic legume R. dasycarpa.

Funder

Ministry of Higher Education

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

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