Intelligence
cultivated
We begin with intelligence nature has already encoded in plants, then apply artificial intelligence to decode it.
Where science
meets the field
Discovery
We start where nature already has the answers.
Our scientists study microbial communities found in plants thriving under real environmental and biological stress. Every microorganism collected is isolated, identified and added to a growing biological library. This builds a detailed map of how microbes, crops and growing conditions interact.
This isn't just a sample collection. It's a living knowledge base of what works in nature, and why.
Prediction
Turning biological possibility into focused candidates.
The number of potential plant-microbe relationships is vast. We use machine learning and computational analysis to find meaningful patterns in complex biological data, rapidly identifying which candidates are most likely to deliver results against defined agricultural needs: crop protection, resilience, nutrient efficiency and plant performance.
Technology narrows the field. Science decides what moves forward.
Characterization
Knowing that something works isn't enough. We need to know how.
Promising microorganisms move through progressively rigorous laboratory and greenhouse evaluation. Our scientists examine how each candidate interacts with the plant, the target stress and the surrounding biological environment, assessing consistency, crop compatibility and mode of action at every stage.
Evidence alone determines what advances.
Formulation
An effective microorganism still has to survive the journey.
Discovery is only half the challenge. Our formulation scientists develop ways to protect biological activity through manufacturing, storage and field application - evaluating carriers, concentrations, shelf stability and compatibility to create products that fit real agricultural operations.
Because a biological solution is only valuable when it can be delivered reliably, every time.
Validation
Candidates that perform under controlled conditions advance into field trials across diverse crops, environments and production systems. Results reveal not just whether a product works, but where it performs best and how consistently it delivers value at scale.
Every field cycle feeds insights back into discovery, selection and formulation, continuously strengthening the platform.
.
Every result strengthens what comes next
- Discover
- Predict & Characterize
- Formulate
- Validate
- Learn
Intelligence
at scale.
Million
How intelligence shapes every layer
Find the signal
Understand why
Predict where
Prove consistency
Learn from every field
How intelligence shapes every layer
AI does not sit at one point in our process. It runs through all of it.
Find the signal
Use genomic and biological data to identify microbial candidates with traits linked to protection, resilience and plant performance.
Understand why
Connect molecular signals with biological and field outcomes to uncover the mechanisms most associated with performance.
Predict where.
Combine field results with soil and climate data to identify the environments where each biological has the strongest potential to perform.
Prove consistency.
Use multi-location testing to define the conditions in which performance is repeatable and which candidates should advance.
Learn from every field
Feed field results back into future discovery, selection and placement so each season sharpens the next generation of decisions.
Protection.
Biological tools designed to help crops respond to disease and pest pressure.
Resilience.
Solutions developed to sustain performance through challenging growing conditions.
Performance.
Products that support establishment, growth and yield potential from the ground up.
