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Updated: Sep 13, 2025

Investigation of Plant Interactions Across Common Mycorrhizal Networks Using Rotated Cores
Published on: March 26, 2019
Phosphate solubilization and mobilization: bacteria-mycorrhiza interactions.
Tobi Moriaque Akplo1, Felix Kouelo Alladassi1, Mahougnon Charlotte Carmelle Zoundji2
1Research Unity of Soil Microbiology and Soil Conservation, Laboratory of Soil Sciences, Faculty of Agronomic Sciences, University of Abomey-Calavi, Abomey-Calavi BP 711, BP 711, Benin.
Phosphate-solubilizing microorganisms (PSMs) convert insoluble phosphorus into plant-accessible forms, offering potential as biofertilizers. Further research is needed to optimize their application for enhanced soil phosphorus availability and plant uptake.
Area of Science:
- Agricultural Science
- Microbiology
- Soil Science
Background:
- Phosphorus (P) is vital for plant growth but often exists in insoluble forms.
- Inaccessible soil phosphorus limits plant development and agricultural productivity.
- Phosphate-solubilizing microorganisms (PSMs) are key players in the soil phosphorus cycle.
Purpose of the Study:
- To review the capabilities of PSMs in solubilizing insoluble phosphorus.
- To highlight the potential of PSMs as biofertilizers for improving phosphorus availability.
- To discuss the mechanisms and factors influencing P solubilization by PSMs.
Main Methods:
- Review of literature on phosphate-solubilizing microorganisms (bacteria and fungi).
- Analysis of mechanisms involved in organic and inorganic phosphorus solubilization.
- Examination of the role of specific genes and microbial species in P cycling.
- Inclusion of arbuscular mycorrhizal fungi as enhancers of P uptake.
Main Results:
- PSMs effectively convert insoluble P into plant-accessible forms.
- Mechanisms include organic acid production, proton extrusion, siderophore, and exopolysaccharide secretion.
- Enzymatic activity mineralizes organic P, while inorganic P is solubilized via various microbial processes.
- Arbuscular mycorrhizal fungi significantly enhance plant phosphorus uptake.
Conclusions:
- PSM inoculants show promise as biofertilizers to improve soil P availability.
- Optimizing application conditions (timing, inoculum form, dosage) is crucial for maximizing effectiveness.
- Further research is essential to fully harness the potential of PSMs in sustainable agriculture.
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