Ubix Bio provides microbiological inoculants that integrate root‑zone microbes with climate and fertigation data to strengthen plant roots, improve nutrient uptake, and enhance nitrogen fixation. Their products are used in greenhouse, turf, and vertical farming operations, delivering more consistent growth, faster stress recovery, and reduced waste across hundreds of acres of tomato, pepper, and cucumber production.
Funding
Funding not disclosed
Founders
Product
Problem
Greenhouse, turf, and vertical farm producers often experience inconsistent crop performance due to mismatches between the root‑zone microbiome and controlled environmental factors such as climate, fertigation, and lighting. These mismatches create stress windows that reduce nutrient use efficiency, increase waste, and lead to uneven growth and yields.
Solution
Ubix Bio offers microbiological inoculants that are calibrated to a grower’s real‑time climate, fertigation, and lighting data, aligning the root‑zone microbiome with the physical environment. The platform uses data‑driven formulations to promote denser root systems, enhance nitrogen fixation, and improve nutrient uptake, which together reduce stress periods and stabilize EC/pH levels. By synchronizing biology with physics and chemistry, growers achieve faster recovery from heat or salinity spikes, tighter uniformity across production zones, and lower input waste. The solution is deployed across greenhouse, turf, and vertical farm operations, with more than 200 acres already benefiting from precision microbial management.
Target Audience
Primary customers are greenhouse, turf, and indoor/vertical farm growers who manage climate, fertigation, and lighting systems and seek more consistent, high‑yield production.
Features
- Data‑integrated inoculant formulations that adjust microbial activity based on real‑time climate, fertigation, and lighting inputs
- Enhanced root development and early flowering to improve crop vigor from planting to harvest
- Nitrogen‑fixing strains and nutrient‑uptake enhancers that stabilize EC/pH and reduce fertilizer waste
- Stress‑window reduction algorithms that accelerate recovery from heat, salinity, or other environmental shocks
- Compatibility with existing greenhouse and vertical‑farm control systems for seamless implementation