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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
by
de Souza Miranda, Rafael
, de Santana Arauco, Adriana Miranda
, Severo, Helane Cristina de Andrade Rodrigues
, de Araújo, Ademir Sérgio Ferreira
, da Costa, Elaine Martins
, Duarte, Maria Helena Ferreira
, Nunes, Raimundo Wesley Fonseca
, de Castro Ferreira, Adriele
, Monteiro, Gilnair Nunes
, Luz, Milena Rodrigues
, da Silva, Allana Pereira Moura
in
631/326/193
/ 631/326/2522
/ 631/326/41
/ Aluminum
/ Arbuscular mycorrhizas
/ Bacillus subtilis
/ Bacillus subtilis - physiology
/ Biofertilizer
/ Biofertilizers
/ Biomass
/ Corn
/ Fertilization
/ Fertilizers
/ Fungi
/ Humanities and Social Sciences
/ Inoculation
/ Microbiota
/ Microorganisms
/ Morphology
/ multidisciplinary
/ Mycorrhizae - physiology
/ Nutrient availability
/ Nutrient solubilization
/ Nutrient uptake
/ Nutrients - metabolism
/ Phosphate fertilization
/ Phosphorus
/ Phosphorus - metabolism
/ Photosynthetic pigments
/ Plant growth
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Plant Roots - microbiology
/ Potassium
/ Proteins
/ Science
/ Science (multidisciplinary)
/ Seeds
/ Soil - chemistry
/ Zea mays - growth & development
/ Zea mays - metabolism
/ Zea mays - microbiology
/ Zea mays L
2025
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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
by
de Souza Miranda, Rafael
, de Santana Arauco, Adriana Miranda
, Severo, Helane Cristina de Andrade Rodrigues
, de Araújo, Ademir Sérgio Ferreira
, da Costa, Elaine Martins
, Duarte, Maria Helena Ferreira
, Nunes, Raimundo Wesley Fonseca
, de Castro Ferreira, Adriele
, Monteiro, Gilnair Nunes
, Luz, Milena Rodrigues
, da Silva, Allana Pereira Moura
in
631/326/193
/ 631/326/2522
/ 631/326/41
/ Aluminum
/ Arbuscular mycorrhizas
/ Bacillus subtilis
/ Bacillus subtilis - physiology
/ Biofertilizer
/ Biofertilizers
/ Biomass
/ Corn
/ Fertilization
/ Fertilizers
/ Fungi
/ Humanities and Social Sciences
/ Inoculation
/ Microbiota
/ Microorganisms
/ Morphology
/ multidisciplinary
/ Mycorrhizae - physiology
/ Nutrient availability
/ Nutrient solubilization
/ Nutrient uptake
/ Nutrients - metabolism
/ Phosphate fertilization
/ Phosphorus
/ Phosphorus - metabolism
/ Photosynthetic pigments
/ Plant growth
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Plant Roots - microbiology
/ Potassium
/ Proteins
/ Science
/ Science (multidisciplinary)
/ Seeds
/ Soil - chemistry
/ Zea mays - growth & development
/ Zea mays - metabolism
/ Zea mays - microbiology
/ Zea mays L
2025
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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
by
de Souza Miranda, Rafael
, de Santana Arauco, Adriana Miranda
, Severo, Helane Cristina de Andrade Rodrigues
, de Araújo, Ademir Sérgio Ferreira
, da Costa, Elaine Martins
, Duarte, Maria Helena Ferreira
, Nunes, Raimundo Wesley Fonseca
, de Castro Ferreira, Adriele
, Monteiro, Gilnair Nunes
, Luz, Milena Rodrigues
, da Silva, Allana Pereira Moura
in
631/326/193
/ 631/326/2522
/ 631/326/41
/ Aluminum
/ Arbuscular mycorrhizas
/ Bacillus subtilis
/ Bacillus subtilis - physiology
/ Biofertilizer
/ Biofertilizers
/ Biomass
/ Corn
/ Fertilization
/ Fertilizers
/ Fungi
/ Humanities and Social Sciences
/ Inoculation
/ Microbiota
/ Microorganisms
/ Morphology
/ multidisciplinary
/ Mycorrhizae - physiology
/ Nutrient availability
/ Nutrient solubilization
/ Nutrient uptake
/ Nutrients - metabolism
/ Phosphate fertilization
/ Phosphorus
/ Phosphorus - metabolism
/ Photosynthetic pigments
/ Plant growth
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Plant Roots - microbiology
/ Potassium
/ Proteins
/ Science
/ Science (multidisciplinary)
/ Seeds
/ Soil - chemistry
/ Zea mays - growth & development
/ Zea mays - metabolism
/ Zea mays - microbiology
/ Zea mays L
2025
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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
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.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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