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Scientist / Senior Scientist, Synthetic Virology for RNA Delivery

MolagriResearch
Pay
C$130K–C$160K
per year
Work mode
On-site
Full Time
Experience
3+ yrs
Master's or PhD

What you need

  • PhD in virology, RNA biology, or related field
  • Hands-on experience engineering RNA viruses, VLPs, or viral vectors
  • Proficient in molecular biology: construct design, cloning, troubleshooting
  • Experience with viral reverse genetics and replicon engineering
  • Ability to diagnose complex failures in RNA delivery systems

What you'll do

  • Build design-build-test workflow for engineered VLPs and RNA cargoes
  • Design and clone viral particle constructs and packaging systems
  • Engineer capsids and replicase/payload architectures for RNA delivery
  • Develop QC assays for particle assembly and RNA integrity
  • Produce VLPs for biochemical characterization and insect bioassays

We are seeking a hands-on RNA virologist to engineer non-replicative VLP systems that package and deliver programmable RNA payloads in target pest insects.

You will build non-replicative viral particle systems that package and protect RNA cargo, deliver payloads into insect cells, amplify the delivered RNA, and express insecticidal payloads without producing replication-competent viruses. This is a hands-on bench role for someone who can move from viral reverse genetics and construct design to particle production, RNA QC, and payload-expression assays.

You will:

  • Build a design-build-test workflow for engineered VLPs, packageable RNA cargoes, replicase-compatible payloads, and non-replicative production systems.
  • Design and clone viral particle constructs, RNA cargoes, reporter systems, and split-component packaging systems.
  • Engineer capsids, packaging elements, and replicase/payload architectures that function together as programmable RNA delivery vehicles.
  • Develop QC assays for particle assembly, VLP yield, RNA packaging, nuclease-protected cargo, RNA integrity, RNA amplification, and payload expression.
  • Produce VLPs at small scale for biochemical characterization, insect-cell testing, and insect bioassays.
  • Troubleshoot failures across construct expression, capsid assembly, cargo packaging, host RNA contamination, particle recovery, RNA amplification, payload expression, and insect-cell delivery.

What You Bring

  • PhD in virology, RNA virus genetics, RNA biology, molecular biology, synthetic biology, or a related field.
  • Hands-on experience engineering RNA viruses, replicons, VLPs, viral vectors, or viral capsids.
  • Experience using viral reverse genetics, replicon engineering, VLP engineering, or viral vector engineering to study or reprogram viral replication, assembly, packaging, or delivery.
  • Experience with large scale production and/or downstream processing of viruses, VLPs, and viral vectors is a plus.
  • Strong molecular biology skills, including construct design, cloning, sequence analysis, and troubleshooting of expression systems.
  • Working knowledge of protein, RNA, and/or particle QC methods.
  • Ability to reason through complex system failures, including poor expression, weak RNA amplification, aggregation, empty particles, cargo degradation, host RNA packaging, and loss of payload expression.
  • A rigorous experimental style and the ability to turn ambiguous virology questions into controlled, decision-enabling experiments.
  • Excitement to work at the bench in a small founding team where the platform is still being invented.

What We Value

Molagri is a small team building a novel bioinsecticide platform. We value scientists who design rigorous experiments, think creatively when the obvious approach fails, communicate clearly, and treat their teammates with kindness and respect. The right person for this role will be hands-on, hard-working, intellectually honest, and excited to help build a platform from first principles.

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About Molagri

Molagri develops safer, more effective pesticides for agriculture. We design biopesticides that hit a precise molecular target unique to pest insects, knocking out pests while sparing pollinators, beneficial insects, and the wider ecosystem. By modeling how pests are likely to evolve, we stay a step ahead of resistance, keeping our products effective against the pests of today and tomorrow. The higher efficacy and biobased production will also contribute to emissions reductions in both manufacturing and field use. Our founders are PhD lab mates from the University of Toronto who have worked together for six years and published in Nature Communications and Nature Microbiology.

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Scientist / Senior Scientist, Synthetic Virology for RNA Delivery
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