Aug 2026· Journal of Advances in Biology & Biotechnology· 0 citations
Abstract
Beneficial soil microorganisms offer a promising approach for enhancing soil fertility and nutrient availability while improving crop productivity and reducing dependence on mineral fertilisers. A field experiment was conducted during the Rabi season of 2023–24 at the Research Farm of the Vegetable Research Centre, Vasantrao Naik Marathwada Krishi Vidyapeeth, Parbhani, Maharashtra, India, to evaluate the effects of arbuscular mycorrhizal fungi (AMF) and plant growth-promoting rhizobacteria (PGPR) on tomato productivity and soil nutrient availability under Vertisol conditions. Twelve treatments comprising 75% of the recommended dose of fertilisers (RDF) in combination with individual or combined microbial inoculants, applied either as a seedling treatment or through soil application, were evaluated in a randomised block design with three replications. The treatment comprising 75% RDF + AMF + Pseudomonas fluorescens + Bacillus megaterium + Trichoderma viride applied through soil application (T₁₂) recorded the highest fruit yield (371.53 q ha⁻¹) and dry matter yield (46.09 q ha⁻¹), representing increases of 25.88 and 37.91% over 100% RDF, respectively. At 95 days after transplanting, T₁₂ also maintained the highest soil available N (204.20 kg ha⁻¹), P (24.90 kg ha⁻¹) and K (798.15 kg ha⁻¹), corresponding to increases of 23.36, 37.49 and 14.73%, respectively, over 100% RDF. The corresponding increases over the absolute control were 46.01, 82.95 and 31.74%. The combined soil-applied consortium consistently produced greater yield and soil nutrient availability than the corresponding seedling application, although the two application methods were statistically comparable for several attributes. Among individual microbial treatments, soil application of AMF was the most effective. The findings demonstrate that AMF–PGPR integration with 75% RDF can improve tomato productivity and maintain higher soil nutrient availability while reducing mineral fertiliser input by 25% under Vertisol conditions.
Tomato production requires adequate nutrient availability to sustain high yield and biomass production, while efficient nutrient acquisition remains important under reduced fertilizer inputs. The integration of AMF and PGPR offers a potential biological approach to improve nutrient acquisition and plant productivity. A...
Nikita D. Pardeshi, R. Khandare, M. N. Ingole et al.· Journal of Scientific Resear...· 0 citations
Declining soil fertility and nutrient depletion remain major constraints to cotton production in many smallholder farming systems. Strategies that improve nutrient cycling and soil quality while reducing dependence on mineral fertilisers are increasingly receiving attention within integrated soil fertility management f...
Robert Cheleo Alphonce, G. Tryphone, P. Saidia et al.· East African Journal of Agri...· 0 citations
It is demonstrated that combined PGPR and AMF inoculation represents an effective and sustainable strategy to enhance soil biological functioning, nutrient cycling, and drought tolerance of O. ficus-indica in water limited environments.
Ilham Zouitane, Mohamed Ferioun, Sana Mounaimi et al.· 3 Biotech· 0 citations
Background: Sustainable wheat production is frequently limited by inefficient nutrient utilization and excessive dependence on conventional fertilizers. Integrating nano-fertilizers with beneficial microorganisms such as Azotobacter offers a promising strategy to improve nutrient availability, crop performance and farm...
Karmnath Kumar, Sucheta Dahiya, Preeti Singh et al.· Indian Journal of Agricultur...· 0 citations
Ensuring global food security while protecting soil health requires sustainable agricultural innovations, such as the use of plant growth-promoting rhizobacteria (PGPR). However, excessive nitrogen fertilization in semi-arid maize systems contributes to soil salinization, groundwater contamination, and declining nutrie...
Leandris Argentel-Martínez, O. Peñuelas-Rubio, L. Pérez-López et al.· Plant physiology and biochem...· 0 citations
gA field experiment was conducted during the rabi seasons of 2024-25 and 2025-26 at the Student Instructional Farm, Chandra Shekhar Azad University of Agriculture and Technology, Kanpur, Uttar Pradesh, India to evaluate the impact of Integrated Nutrient Management (INM) on soil physico-chemical properties and soil fert...
Mayank Kumar, Anil Kumar Singh, Rohit Jaiswal et al.· Genetics and Molecular Resea...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.