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Pseudomonas fluorescens C7R12 type III secretion system impacts mycorrhization of Medicago truncatula and associated
Amandine Viollet1, Barbara Pivato1, Christophe Mougel1,2
1Agroécologie, AgroSup Dijon, CNRS, INRA, Université Bourgogne Franche-Comté, 21000, Dijon, France.
Abstract:
Type three secretion systems (T3SSs) mediate cell-to-cell interactions between Gram-negative bacteria and eukaryotes. We hypothesized that fluorescent pseudomonads harboring T3SS (T3SS+) would be beneficial to arbuscular mycorrhizal symbiosis because non-pathogenic fluorescent pseudomonads have been previously shown to be much more abundant in mycorrhizal than in non-mycorrhizal roots. We tested this hypothesis by comparing mycorrhization and the associated rhizosphere microbial communities of Medicago truncatula grown in a non-sterile soil inoculated with either the T3SS+ mycorrhiza helper bacterium Pseudomonas fluorescens (C7R12) or a T3SS- mutant of the strain. Results showed that the bacterial secretion system was responsible for the promotion of mycorrhization because root colonization by arbuscular mycorrhizal fungi was not promoted by the T3SS- mutant. The observed T3SS-mediated promotion of mycorrhization was associated with changes in the rhizosphere bacterial communities and the increased occurrence of Claroidoglomeraceae within the intraradical arbuscular mycorrhizal fungi. Furthermore, both pseudomonad strains promoted the host-free growth of a model arbuscular mycorrhizal fungus in vitro, suggesting that T3SS-mediated promotion of mycorrhization occurs during plant-fungal interactions rather than during the pre-symbiotic phase of fungal growth. Taken together, these data provide evidence for the involvement of T3SS in promoting arbuscular mycorrhization by a model fluorescent pseudomonad and suggest the implication of interactions between the bacterium and mycorrhizas.
Insights
The type three secretion system (T3SS) in Pseudomonas fluorescens promotes arbuscular mycorrhizal symbiosis in Medicago truncatula. This bacterial secretion system enhances fungal root colonization and alters rhizosphere microbial communities.
Area of Science:
- Microbial Ecology
- Plant-Microbe Interactions
- Symbiosis
Background:
- Type three secretion systems (T3SSs) mediate interactions between Gram-negative bacteria and eukaryotes.
- Fluorescent pseudomonads are abundant in mycorrhizal plant roots, suggesting a beneficial role.
Purpose of the Study:
- To investigate the role of T3SS in promoting arbuscular mycorrhizal symbiosis by fluorescent pseudomonads.
- To compare the effects of T3SS+ and T3SS- Pseudomonas fluorescens on Medicago truncatula mycorrhization.
Main Methods:
- Medicago truncatula grown in non-sterile soil inoculated with T3SS+ or T3SS- Pseudomonas fluorescens.
- Comparison of mycorrhization levels and rhizosphere microbial communities.
- In vitro growth assays of arbuscular mycorrhizal fungi.
Main Results:
- T3SS+ Pseudomonas fluorescens significantly promoted mycorrhization, while the T3SS- mutant did not.
- T3SS-mediated promotion of mycorrhization was linked to shifts in bacterial communities and increased Claroidoglomeraceae.
- Both bacterial strains promoted fungal growth in vitro, suggesting T3SS acts during plant-fungal interactions.
Conclusions:
- T3SS is crucial for Pseudomonas fluorescens to promote arbuscular mycorrhizal symbiosis.
- T3SS influences plant-fungal interactions within the rhizosphere.
- This highlights the importance of bacterial secretion systems in facilitating beneficial plant-microbe symbioses.
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