Technologies Developed
| 1. | Liquid Azotobacter biofertilizer as a foliar application technology for efficient microbial nutrient management and sustainable crop production. |
| 2. | Production of locally adapted AMF through pot culture to develop effective microbial inoculants that enhance root development, nutrient acquisition and soil biological health. |
| 3. | Low-cost Trichoderma production technology using locally available resources to produce affordable, effective and environmentally friendly biopesticides for sustainable crop protection. |
| 4. | In vitro propagation to produce healthy, uniform and rapidly multiplied EFY planting material, supporting quality crop establishment, farmer access to planting material and livelihood diversification. |
| 5. | Conversion of biodegradable domestic and municipal waste into renewable biogas, creating an integrated waste-to-energy and nutrient-recycling solution that reduces dependence on cow dung. |
| 6. | ICT-based Technology Service Centre bridges the digital and knowledge gap by delivering timely scientific information, technical advisory and technology-support services to rural communities. |
| 7. | Induced breeding technology for quality fish-spawn production, combining scientific broodstock management, controlled breeding and hatchery practices for sustainable rural aquaculture. |
| 8. | Integration of scientific apiary management with promotion of bee-flora plantations to enhance honey production, crop pollination, biodiversity and sustainable rural livelihoods. |
| 9. | High-quality microbial biofertilizers based on Azotobacter, Rhizobium, PSB, KMB and other beneficial microorganisms. |
| 10. | Microbial biopesticide technologies using Trichoderma, Pseudomonas, Bacillus and other biocontrol agents for sustainable crop protection. |
| 11. | Fruit-fly management technology using attractant/lure-based traps for reducing pest damage. |
| 12. | Vermicomposting technology integrating earthworms, enriched organic residues, biogas slurry and vermiwash for efficient recycling of farm wastes. |
| 13. | Plant tissue culture technology for rapid multiplication and production of quality planting materials, particularly banana and other horticultural crops. |
| 14. | Mushroom cultivation technologies covering strain selection, substrate preparation, cultivation and low-cost production methods suitable for rural entrepreneurs. |
| 15. | Soil, water and manure testing technology providing analytical support for nutrient management and scientific agricultural practices. |
| 16. | Integrated farming and livelihood technologies combining crop, livestock, fishery, bio-inputs and resource recycling for small and marginal farmers. |
| 17. | Village-level biotechnology models, including training and development of Village Resource Persons/entrepreneurs who provide bio-inputs, soil testing, crop advisory and technology-based services at the grassroots level. |
| 18. | Indigenous Technical Knowledge (ITK) validation and technology integration, linking locally evolved practices with scientific approaches for sustainable agriculture. |
| 19. | Climate-resilient technologies for the Sundarbans, including integrated agriculture–aquaculture–livestock systems, organic/bio-input-based farming and livelihood diversification suited to saline and climate-vulnerable areas. |