Precision biologicals

Unleashing the power
of the microbiome
in your crops.

At Consyntra we develop microbial communities tailored to your crop, soil, and disease pressure. We don't sell generic biologicals: we design, validate, and adjust solutions for real field conditions.

Explore the platform
Consyntra Scientific field work
Less trial and error. More biological design. We don't start with a product. We start with your field. Less trial and error. More biological design. We don't start with a product. We start with your field.
Why we're different

Consortia designed for your field.

This isn't just another biological. It's a community of microorganisms designed specifically for your crop and your problem. Field biology doesn't work with a single strain — it works as a community.

Generic biological
Single strain
  • Single biological function
  • Low persistence in soil
  • Same product for every field
  • Results that vary cycle to cycle
Consyntra consortium
Designed community
  • Multiple complementary functions
  • Establishes and persists in the soil
  • Designed for your crop and problem
  • Isolated from your own crop and region
The platform

From native isolates to repeatable product development.

We don't start with a generic product. First we understand what's happening in your soil, your crop, and your problem. Then we isolate microorganisms adapted to those conditions and design combinations that can work together: controlling pathogens, improving roots, releasing nutrients, or helping the plant under stress.

Consyntra combines native microbial isolates, genomic insight, and a proprietary design workflow to move from field-specific discovery to repeatable biological product development.

Built to turn field-specific discovery into repeatable product development.

What powers Consyntra

A growing biological design engine built from plant- and soil-associated isolates, genomic insight, and iterative development across real crop and field contexts.

8,000+
Microbial isolates

Plant- and soil-associated isolates generated through years of systematic isolation.

300+
Priority isolates

Curated for community design based on functional relevance, compatibility potential, and manufacturability.

120+
Genomic assemblies

Key isolate genomes used for functional selection, quality control, and consortium traceability.

20+
SynComs designed

Designed across crop, soil, and stress contexts to support field-informed biological product development.

/ 01 DIAGNOSIS

We diagnose
the problem

Microbiome analysis of soil, leaf, or seed. We identify what is failing before proposing anything.

/ 02 ISOLATION

We isolate
adapted microorganisms

Bacteria and fungi isolated from the crop itself. Local biology, not imported.

/ 03 DESIGN

We design
the community

AI and bioinformatics prioritize which strains work together. We reduce trial and error to weeks.

/ 04 PRODUCTION

We produce
the pilot batch

Specific formulation by application: foliar, drench, seed. Each consortium, its own delivery.

/ 05 VALIDATION

We validate
in the plot

Efficacy measured first in the lab. Then field trials with controls and commercial metrics.

Consyntra Consortia

Some of our consortia and results.

Each consortium was designed for a specific problem, in a specific crop, with real field data. This is what we are working on right now.

Maize
Maize crop

Maize

State of Mexico
  • Biostimulant
  • Biofungicide against Fusarium
SynCom-B · Maize / Fusarium
Key species of the designed community

Phytobacter diazotrophicus, Klebsiella variicola, Pseudomonas protegens, Achromobacter xylosoxidans and Pantoea ananatis.

Validated results
+17%
yield
−64%
Fusarium wilt
Celery
Field sampling in celery crop

Celery

Sonora
  • Bionematicide
SynCom-S · Soil / Nematode
Key species of the designed community

Bacillus subtilis, Pseudomonas fluorescens, Paenibacillus polymyxa, Lysobacter enzymogenes and Sinorhizobium spp.

Current status
Field validation in progress for nematode management in celery
Squash
Squash crop

Squash

Sonora
  • Biostimulant
  • Biofungicide against blight
SynCom-P · Plant / Blight
Key species of the designed community

Bacillus amyloliquefaciens, Methylobacterium spp., Streptomyces sp., Pseudomonas putida and Sphingomonas spp.

Validated results
3360%
pathogen inhibition
F. oxysporum F. solani F. culmorum Colletotrichum Rhizoctonia Pestalotiopsis
Co-development

One platform. Multiple partners.

Our platform also operates as a discovery engine for other companies in the sector. We co-develop the next biological for your portfolio.

Biological input companies

Accelerate your R&D pipeline with our discovery platform. Bring the next biological product to market backed by microbial community science.

Integrated growers

Design exclusive biologicals for your operation and crop. Tailored solutions with defined usage rights and internal validation.

Distribution brands

Launch differentiated products backed by local science and validated data. We co-develop white-label consortia specific to your markets.

The team

An alliance between biology, data, and agriculture.

At Consyntra we combine microbiome science, data analysis, and practical agricultural experience to develop biologicals that are more specific, measurable, and applicable. We use genomics, bioinformatics, and artificial intelligence to design microbial communities with greater probability of working under real crop conditions.

Microbiology Genomics Bioinformatics Predictive models +9 years in biologicals PhDs in biological sciences
Soil and root samples processed at Consyntra lab
Lab · Sample processing
Strategic partners
Tecnológico de Monterrey
Genomics Core Lab
i2T2 Nuevo León
Texas A&M University
NVIDIA Inception Program
ALCEMA

Let's design a biological solution specific to your field.

No commitment: we begin with an analysis and deliver a diagnosis before discussing any proposal.