Microbial Compositions For Promoting Plant Growth
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This biofertiliser uses a clearly identified mix of beneficial bacteria that are proven to help plants grow better by improving nitrogen, phosphate, and potassium uptake. Unlike many products on the market with unknown bacteria, this formula includes specific, tested strains that boost soil fertility, increase crop yield, and make plants more resistant to stress and disease. It’s a reliable, eco-friendly, and effective solution for improving agriculture and supporting food security.
Food security has become a priority for countries of all economic development levels while the agricultural sector plays a critical role in increasing food availability. Due to greater food demand and an increase in crop productivity, and efficient strategy should be aimed to solve the problem by producing enough food for the human population.
The present invention provides a microbial composition for promoting plant-growth comprising, a mixture of plant-growth promoting bacterial cultures comprising at least one nitrogen-fixing bacteria from the genus Brachybacterium or Enterobacter; at least one phosphate-solubilising bacteria from the genus Bacillus or Paenibacillus, and at least one potassium solubilising bacteria from the genus Bacillus.
In another aspect, the present invention provides a microbial composition for promoting plant-growth comprising, a bacterial inoculant comprising a mixture of plant-growth promoting bacterial cultures of Enterobacter cloacae, Paenibacillus pasadenensis, and Bacillus thuringiensis.
The innovation is a biofertilizer made with a scientifically formulated mix of specific plant growth-promoting bacteria (PGPB), including nitrogen-fixing (Enterobacter cloacae), phosphate-solubilizing (Paenibacillus pasadenensis), and potassium-solubilizing (Bacillus thuringiensis) strains. This targeted microbial composition enhances nutrient uptake, improves soil fertility, and boosts crop resilience, offering a safe, sustainable, and effective alternative to conventional chemical fertilizers and biofertilizers with unknown bacterial content.