Welcome to Zynt Bio — your partner in precision bioinformatics delivering reproducible and decision-ready insights.
From Raw Sequencing to Actionable R&D Insights.
Zynt Bio engineers cloud-native, containerized computational pipelines built exclusively for plant genetics, host-pathogen dynamics, microbial strain engineering, and environmental metagenomics — including AMR surveillance and biosynthetic pathway discovery. Purpose-built for non-human biology, our workflows avoid the regulatory and infrastructure overhead of clinical systems, delivering secure, auditable, and reproducible data assets.
Modern biotechnology no longer suffers from a lack of genomic data; it suffers from a lack of reproducible processing and automated infrastructure. We combine deep domain intuition in host-pathogen dynamics and microbial ecosystems with enterprise-grade cloud architecture, delivering clean, structured genomic insights that commercial R&D directors and federal research agencies can rely on.
All data workloads execute on fully isolated, secure, and elastically scalable cloud infrastructure, ensuring fast processing and secure data governance.
Our workflows leverage strict, production-ready community frameworks (including custom-tuned nf-core architectures), giving zero-install pipeline reproducibility, eliminating local software conflicts, and tracking file provenance for every step.
Every project delivers detailed technical narratives and methodology briefs — exact command-line parameters, database versions, and workflow hashes — giving you a complete, verifiable record of how your results were produced.
Comprehensive mRNA-seq and high-precision small RNA profiling to trace target gene knockdown efficiency, mobile RNA signals, and crop genetic traits.
Specialized Dual RNA-Seq pipelines designed to simultaneously align and de-convolve mixed sequence matrices, separating plant immune responses from fungal or bacterial virulence factors.
We use shotgun metagenomics and advanced binning (MetaBAT2, MaxBin2) to reconstruct Metagenome-Assembled Genomes (MAGs), map active metabolic soil pathways, and profile the environmental resistome — screening for antimicrobial resistance genes to support agricultural stewardship and regulatory reporting.
From discovery to validation: we mine genomic and metagenomic data for novel biosynthetic gene clusters and enzymatic pathways, then verify engineered production strains through whole-genome resequencing, CRISPR off-target mutation screening, and expression cassette integrity audits.