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Automated Genotyping
Automated Genotyping employs custom-designed TaqMan assays in real-time PCR with sequence-specific allele identification, featuring a fully automated proprietary DNA extraction method and touchless acoustic liquid handlers for duplicate reaction setup, delivering highly accurate results with 99.97% precision in 24 or 72 hours.
Eliminate human error

Genetic Monitoring
Genetic Monitoring screens against 10,000 SNPs in 241 inbred strains to safeguard your research quality. The MiniMUGA panel helps you pinpoint the full genetic background (or substrain) of your mice, eliminating unwanted variation from mixed backgrounds.
Stay on top of change

Microbiome Analysis
Microbiome Analysis ensures rigor and data integrity by characterizing changes in the gut microbiome of animal models. Designed for both routine monitoring and experimental studies, it helps researchers optimize resources, ensure reproducibility, and make confident, data-driven decisions
Understand microbial impact
Try it Free
Process up to 10 genotyping samples at no cost!
See how Automated Genotyping helps labs process more samples with less effort.
Free up staff and lab resources by eliminating in-house genotyping
Eliminate repeat testing caused by inconsistent or unclear results
Get accurate, reliable data you can act on with confidence
Access to more than 60,000 real time PCR assays in stock
Choose from 10,000+ MGI and JAX lines available
Process samples from mice, zebrafish, rats, and more
No contract. No minimum. No obligation.

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300+ TAGCenter locations around the world.
User Scenario
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Results without bottlenecks
Automated Genotyping
A vivarium managing large mouse breeding colonies uses Automated Genotyping to rapidly identify desired genotypes at weaning. This enables more efficient colony planning, reduces housing and breeding costs, and keeps breeding programs aligned with research timelines.

Results without bottlenecks
Automated Genotyping
A vivarium managing large mouse breeding colonies uses Automated Genotyping to rapidly identify desired genotypes at weaning. This enables more efficient colony planning, reduces housing and breeding costs, and keeps breeding programs aligned with research timelines.
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