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Crispr Jobs in Tennessee (NOW HIRING)

By integrating single-cell and spatial transcriptomics, CRISPR genome engineering, tissue clearing, advanced microscopy, and functional studies in zebrafish and mouse models, we seek to identify ...

Genetics Tutor

Knoxville, TN · Remote

$18 - $40/hr

... CRISPR. Ability to explain linkage analysis, Hardy-Weinberg equilibrium, and gene regulation models while preparing students for advanced biology and medical genetics applications. * Conceptual ...

Genetics Tutor

Memphis, TN · Remote

$18 - $40/hr

... CRISPR. Ability to explain linkage analysis, Hardy-Weinberg equilibrium, and gene regulation models while preparing students for advanced biology and medical genetics applications. * Conceptual ...

Genetics Tutor

Kingsport, TN · Remote

$18 - $40/hr

... CRISPR. Ability to explain linkage analysis, Hardy-Weinberg equilibrium, and gene regulation models while preparing students for advanced biology and medical genetics applications. * Conceptual ...

Genetics Tutor

Murfreesboro, TN · Remote

$18 - $40/hr

... CRISPR. Ability to explain linkage analysis, Hardy-Weinberg equilibrium, and gene regulation models while preparing students for advanced biology and medical genetics applications. * Conceptual ...

Genetics Tutor

Nashville, TN · Remote

$18 - $40/hr

... CRISPR. Ability to explain linkage analysis, Hardy-Weinberg equilibrium, and gene regulation models while preparing students for advanced biology and medical genetics applications. * Conceptual ...

Genetics Tutor

Chattanooga, TN · Remote

$18 - $40/hr

... CRISPR. Ability to explain linkage analysis, Hardy-Weinberg equilibrium, and gene regulation models while preparing students for advanced biology and medical genetics applications. * Conceptual ...

Research Technician

Nashville, TN · On-site

$17.50 - $24/hr

Key activities will include CRISPR-based genetic engineering and culturing of adherent mammalian cell lines, biochemical purification and characterization of EVs, mouse tissue harvesting and ...

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Showing results 1-20

Crispr information

See Tennessee salary details

$31.8K

$50.9K

$91.7K

How much do crispr jobs pay per year?

As of Aug 23, 2026, the average yearly pay for crispr in Tennessee is $50,878.00, according to ZipRecruiter salary data. Most workers in this role earn between $42,200.00 and $42,700.00 per year, depending on experience, location, and employer.

What is a crispr?

A CRISPR job typically involves working with CRISPR-Cas9 or related gene-editing technologies in fields such as biomedical research, agriculture, or biotechnology. Professionals in this field may design, execute, and analyze gene-editing experiments to modify DNA for therapeutic, industrial, or scientific purposes. Roles can range from research scientists to bioinformatics specialists and lab technicians. Strong knowledge of molecular biology, genetics, and bioengineering is often required.

What types of projects or research might I work on as a crispr scientist?

As a CRISPR Scientist, you may contribute to projects ranging from basic research in gene function and disease mechanisms to applied initiatives like crop improvement, gene therapy development, or pharmaceutical innovation. Your day-to-day responsibilities might include designing and executing gene-editing experiments, analyzing genetic data, collaborating with interdisciplinary teams, and documenting results for publication or regulatory submissions. Depending on your employer, you could work in academia, biotechnology, agriculture, or medical research industries. This role offers opportunities to make impactful scientific discoveries and gain exposure to emerging technologies, providing a strong foundation for career advancement within the field.

What are the key skills and qualifications needed to thrive in the crispr position, and why are they important?

To thrive in a CRISPR Scientist role, you need a solid background in molecular biology, genetics, and gene-editing techniques, typically supported by an advanced degree in a life science discipline. Familiarity with laboratory equipment, gene-editing platforms like CRISPR-Cas9, and certifications in genetic engineering or molecular techniques are highly valuable. Attention to detail, critical thinking, and strong teamwork capabilities are key soft skills in this position. These skills are crucial to ensure safe, accurate, and innovative application of gene-editing technologies in research or therapeutics.

What careers use CRISPR?

Careers that use CRISPR include geneticists, molecular biologists, biomedical researchers, and biotech engineers. These professionals work in research labs, pharmaceutical companies, and academic institutions to develop gene editing therapies, improve crop traits, and study genetic diseases, often requiring skills in laboratory techniques and knowledge of gene editing tools.

What are the most commonly searched types of Crispr jobs in Tennessee?

The most popular types of Crispr jobs in Tennessee are:

Infographic showing various Crispr job openings in Tennessee as of August 2026, with employment types broken down into 86% Full Time, and 14% Contract. Highlights an 100% In-person job distribution, with an average salary of $50,878 per year, or $24.5 per hour.

Faculty Position - Department of Computational Biology

Thecentermemphis

Memphis, TN • On-site

$90 - $120/hr

Other

Posted 5 days ago


Job description

SJCRH

Be the force behind the cures. From analyzing complex biomedical data in pediatric cancer to creating innovative technologies and computational tools, your work at St. Jude can directly impact patient care.

The Department of Computational Biology invites applications for Assistant/Associate/Full Member (faculty) positions in, but not limited to, the following areas:

Omics Technologies

We seek a computational technology innovator to develop next generation omics platforms for pediatric biology and diseases. Areas of interest include RNA biology (splicing/fusions), CRISPR functional genomics (CRISPRi/a, Perturb‑seq, combinatorial screens), single-cell and spatial omics, metabolomics, and immunopeptidomics. The successful candidate will pioneer assay–algorithm co-design, demonstrate cross‑disciplinary leadership and lead reproducible & open science.

AI in Biomedicine

We seek an AI‑first scientist to build foundation models and agentic AI tools spanning DNA/RNA/protein/imaging/spatial/EHR data for pediatric precision medicine. Topics include regulatory genomics foundation models, multimodal tissue/cell models (WSI + spatial + single cell), proteogenomic/neoantigen prediction, computational pathology (WSI modeling, slide omics fusion) and clinical informatics, plus trustworthy AI (calibration, uncertainty, drift monitoring).

Candidates should have a record of impactful methods/tools, experience with clinical informatics pipelines, and a commitment to safe, reproducible, clinic‑ready AI.

Experience building LLM‑driven, agentic systems for automated analysis or experiment planning with appropriate guardrails is highly valued.

Environment & Resources

The Department occupies 28,700 square feet of laboratory and office space. Investigators have dedicated shared resources for large‑scale data analysis and functional validation, including priority access to cloud computing, a local high‑performance computing facility housed in a state‑of‑the‑art data center, a genomics laboratory for developing new omics technologies and assays, a wet lab supporting dry‑lab faculty, and a software engineering team for high‑throughput analysis and pipeline automation. The Department is key in multiple completed and ongoing institutional projects, including Pediatric Cancer Genome Project (PCGP), St. Jude Cloud, PedDep Accelerator, Real Time Clinical Genomics, iTARGETS, and COMET. The research environment at St. Jude is highly collaborative, with opportunities across basic and clinical departments and access to institution‑wide core facilities led by PhD‑level scientists.

Compensation & Appointment

We offer highly competitive packages, including generous startup funds, computing resources, equipment, laboratory space, personnel support, and potential institutional support beyond the start‑up phase. Appointments at the Assistant, Associate, or Full Member level will be considered.

Qualifications
  • PhD (or equivalent) with at least three years of relevant postgraduate experience, or a demonstrated track record of developing novel, high‑impact computational methods.
  • For Area A: evidence of assay–algorithm co‑design in RNA/CRISPR/single-cell/spatial/metabolomics.
  • For Area B: experience with foundation models, multimodal learning, clinical NLP, and trustworthy AI; familiarity with clinical informatics.

St. Jude is an Equal Opportunity Employer.

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