Sustainable-forage production is globally increasing, especially in marginal areas where the edaphic conditions for plant growth are not optimal. Soil salinization influences the symbiotic interaction between alfalfa and rhizobia. The efficiency of different symbiotic pairs (Sinorhizobium meliloti-Medicago sativa) was evaluated in relation to NaCl application (100 mM) on two different alfalfa cultivars (Marina and Etrusca) and 21 S. meliloti strains isolated in Algeria. At 100 mM NaCl, it was observed that there was a higher variability of plant dry weight compared to the control. The strains able to improve plant growth at 100 mM NaCl were different and specific for each alfalfa cultivar, highlighting that (symbiont) G x (host) G interaction is magnified under stressed (saline) conditions (E). Three strains were then identified as candidate inoculants for M. sativa cv Marina and used for an in-field experiment with induced stress (no irrigation), together with S. meliloti GR4 (a highly competitive strain). In-field experiments, showed a high variability, and a significant difference of plant biomass was observed only for those inoculated with S. meliloti GR4. Obtained results suggest that multiple traits should be considered for inoculant-strain selection, and for an efficient translation from lab to field, it requires extensive comprehension of the mechanisms driving G x G x E interaction.

Salt Stress Highlights the Relevance of Genotype × Genotype Interaction in the Nitrogen-Fixing Symbiosis between Sinorhizobium meliloti and Alfalfa / Bellabarba, Agnese; Decorosi, Francesca; Fagorzi, Camilla; El Hadj Mimoune, Amina; Buccioni, Arianna; Santoni, Margherita; Pacini, Gaio Cesare; Bekki, Abdelkader; Azim, Khalid; Hafidi, Majida; Mazzoncini, Marco; Mengoni, Alessio; Pini, Francesco; Viti, Carlo. - In: SOIL SYSTEMS. - ISSN 2571-8789. - STAMPA. - 7:(2023), pp. 112.0-112.0. [10.3390/soilsystems7040112]

Salt Stress Highlights the Relevance of Genotype × Genotype Interaction in the Nitrogen-Fixing Symbiosis between Sinorhizobium meliloti and Alfalfa

Bellabarba, Agnese;Decorosi, Francesca;Fagorzi, Camilla;Buccioni, Arianna;Santoni, Margherita;Pacini, Gaio Cesare;Bekki, Abdelkader;Mengoni, Alessio;Pini, Francesco;Viti, Carlo
2023

Abstract

Sustainable-forage production is globally increasing, especially in marginal areas where the edaphic conditions for plant growth are not optimal. Soil salinization influences the symbiotic interaction between alfalfa and rhizobia. The efficiency of different symbiotic pairs (Sinorhizobium meliloti-Medicago sativa) was evaluated in relation to NaCl application (100 mM) on two different alfalfa cultivars (Marina and Etrusca) and 21 S. meliloti strains isolated in Algeria. At 100 mM NaCl, it was observed that there was a higher variability of plant dry weight compared to the control. The strains able to improve plant growth at 100 mM NaCl were different and specific for each alfalfa cultivar, highlighting that (symbiont) G x (host) G interaction is magnified under stressed (saline) conditions (E). Three strains were then identified as candidate inoculants for M. sativa cv Marina and used for an in-field experiment with induced stress (no irrigation), together with S. meliloti GR4 (a highly competitive strain). In-field experiments, showed a high variability, and a significant difference of plant biomass was observed only for those inoculated with S. meliloti GR4. Obtained results suggest that multiple traits should be considered for inoculant-strain selection, and for an efficient translation from lab to field, it requires extensive comprehension of the mechanisms driving G x G x E interaction.
2023
7
0
0
Goal 2: Zero hunger
Bellabarba, Agnese; Decorosi, Francesca; Fagorzi, Camilla; El Hadj Mimoune, Amina; Buccioni, Arianna; Santoni, Margherita; Pacini, Gaio Cesare; Bekki, Abdelkader; Azim, Khalid; Hafidi, Majida; Mazzoncini, Marco; Mengoni, Alessio; Pini, Francesco; Viti, Carlo
File in questo prodotto:
File Dimensione Formato  
soilsystems-07-00112 (2).pdf

Accesso chiuso

Tipologia: Pdf editoriale (Version of record)
Licenza: Open Access
Dimensione 1.61 MB
Formato Adobe PDF
1.61 MB Adobe PDF   Richiedi una copia

I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1352820
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 0
  • ???jsp.display-item.citation.isi??? 0
social impact