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Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability
Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability
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Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability
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Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability
Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability

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Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability
Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability
Journal Article

Co-inoculation of arbuscular mycorrhizal fungi and Bacillus subtilis enhances morphological traits, growth, and nutrient uptake in maize under limited phosphorus availability

2025
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Overview
The use of beneficial microorganisms to enhance phosphate fertilizer use efficiency and solubilize residual phosphorus (P) is a promising strategy to improve soil P availability for plants. This study tested the hypothesis that inoculation with arbuscular mycorrhizal fungi, either alone or in combination with Bacillus subtilis , enhances maize growth and optimizes nutrient availability, particularly phosphorus. The experiment was conducted under greenhouse conditions with four replications, following an 8 × 3 factorial design. Treatments included individual inoculations with Bacillus subtilis (IPACC26), Rhizophagus clarus (RJN102A), Claroideoglomus etunicatum (SCT101A), and a commercial inoculant of Rhizophagus intraradices (Rootella BR ULTRA), as well as three co-inoculations (IPACC26 combined with each fungus) and a non-inoculated control. These treatments were combined with three levels of phosphate fertilization (0, 50, and 100% of the recommended P level). Mycorrhizal colonization improved root architecture and increased photosynthetic pigments and uptake of P and other nutrients, resulting in greater plant growth and biomass production. The most pronounced effects were observed in plants inoculated with R. clarus and C. etunicatum , either alone or in combination with B. subtilis , at the 0 and 50% P levels. At 0% P, inoculated plants accumulated significantly more biomass, with root and shoot dry mass up to 3,000% and 680% higher, respectively, than those of uninoculated plants; this effect was associated with a 1,700% increase in shoot P accumulation compared to the control. These findings highlight the potential of these inoculants as biofertilizers for more sustainable and efficient phosphorus management in maize cultivation.