1

Single Cell Spatial Transcriptomics Jobs in Missouri

$55K - $100K/yr

The successful candidate will independently lead projects integrating multi-omics (single-cell RNA- and ATAC-seq, spatial transcriptomics) and genetics to understand the biology of human aging, with ...

$41K - $75K/yr

The successful candidate will be involved in projects integrating multi-omics (single-cell RNA- and ATAC-seq, spatial transcriptomics) and genetics to understand the biology of human aging, with a ...

$18.77 - $31.94/hr

We use in vitro assays, in vivo mouse injury models, transgenic mice, tissue analysis, confocal microscopy, and single cell or spatial transcriptomics, among other techniques. Performs independently ...

... single-cell RNA- and ATAC-seq, spatial transcriptomics) and genetics to understand the biology of human aging, with a focus on neurodegenerative diseases and personalized medicine. Primary Duties ...

Analyze and interpret large, complex biological datasets - including spatial proteomics and single-cell data - to support discovery of new drugs, therapies, and biologically meaningful patterns.

$78K - $117K/yr

Hands-on experience with spatial or single-cell transcriptomics technologies;Experience working with automated laboratory equipment, such as liquid handling systems;Understanding of bioinformatics ...

Functional Genomics Scientist

Chesterfield, MO ยท On-site

$78K - $117K/yr

Hands-on experience with spatial or single-cell transcriptomics technologies; * Experience working with automated laboratory equipment, such as liquid handling systems; * Understanding of ...

Hands-on experience with spatial or single-cell transcriptomics technologies; Experience working with automated laboratory equipment, such as liquid handling systems; Understanding of bioinformatics ...

Functional Genomics Scientist

Chesterfield, MO ยท On-site

$78K - $117K/yr

Hands-on experience with spatial or single-cell transcriptomics technologies; * Experience working with automated laboratory equipment, such as liquid handling systems; * Understanding of ...

Single Cell Spatial Transcriptomics information

What are the key skills and qualifications needed to thrive as a Single Cell Spatial Transcriptomics Scientist, and why are they important?

To thrive as a Single Cell Spatial Transcriptomics Scientist, you need a strong background in molecular biology, genomics, and bioinformatics, typically supported by an advanced degree (PhD or MSc) in a relevant field. Familiarity with high-throughput sequencing platforms, spatial transcriptomics technologies (like 10x Genomics Visium or NanoString GeoMx), and data analysis tools such as R or Python is essential. Critical thinking, problem-solving, and effective communication are crucial soft skills for interpreting complex data and collaborating in multidisciplinary teams. These skills and qualities are vital for generating reliable insights into cellular function and spatial organization, which drive innovative research and discovery.

What are some typical challenges faced by professionals working in Single Cell Spatial Transcriptomics, and how can they be addressed?

Professionals in Single Cell Spatial Transcriptomics often encounter challenges related to handling large, complex data sets and integrating spatial information with single-cell transcriptomic profiles. These tasks demand strong computational skills and close collaboration with bioinformaticians and other researchers. Effective communication within interdisciplinary teams is essential to ensure experimental design aligns with downstream analysis needs. Staying updated with rapidly evolving technologies and best practices also helps professionals overcome technical hurdles and produce reliable, high-impact results.

What is single cell spatial transcriptomics?

Single cell spatial transcriptomics is a cutting-edge technique that allows researchers to analyze gene expression in individual cells while preserving their spatial location within a tissue. This method combines the high-resolution insights of single-cell RNA sequencing with spatial information, enabling scientists to understand how cells interact and organize within their native environments. It is widely used in biomedical research to study tissue architecture, disease mechanisms, and cellular heterogeneity.
What are popular job titles related to Single Cell Spatial Transcriptomics jobs in Missouri? For Single Cell Spatial Transcriptomics jobs in Missouri, the most frequently searched job titles are:
What job categories do people searching Single Cell Spatial Transcriptomics jobs in Missouri look for? The top searched job categories for Single Cell Spatial Transcriptomics jobs in Missouri are:
What cities in Missouri are hiring for Single Cell Spatial Transcriptomics jobs? Cities in Missouri with the most Single Cell Spatial Transcriptomics job openings:
Infographic showing various Single Cell Spatial Transcriptomics job openings in Missouri as of July 2026, with employment types broken down into 1% As Needed, 76% Full Time, 22% Part Time, and 1% Contract. Highlights an 94% Physical, 1% Hybrid, and 5% Remote job distribution.
Postdoctoral Research Associate-Coral Cell and Molecular Biology

Postdoctoral Research Associate-Coral Cell and Molecular Biology

Stowers Institute for Medical Research

Kansas City, MO โ€ข On-site

Other

Posted 8 days ago


Job description

The Gibson Laboratory at the Stowers Institute for Medical Research invites applications for an outstanding Postdoctoral Research Associate to develop and apply next-generation genome engineering technologies in the reef-building coral Acropora millepora. This is a unique opportunity to establish one of the first comprehensive CRISPR-based genome engineering platforms in a rapidly emerging marine model while addressing fundamental questions in coral development, symbiosis, regeneration, biomineralization, and environmental adaptation. The successful candidate will help create the genetic toolkit that enables the next generation of mechanistic studies in reef-building corals.



The postdoctoral fellow will lead efforts to develop and implement CRISPR-based gene editing in our laboratory-based population of Acropora millepora, including targeted gene knockouts, knock-ins, transgenic reporter generation, and other advanced functional genomic approaches. These technologies will be integrated with quantitative microscopy, developmental biology, genomics, and single-cell and spatial transcriptomics to investigate the molecular mechanisms underlying coral development and physiology. The position offers substantial intellectual freedom and opportunities to establish independent research directions while helping transform corals into genetically tractable experimental systems


.

The Gibson Laboratory focuses on the biology of anthozoan cnidarians, combining developmental biology, evolutionary biology, molecular genetics, functional genomics, and computational biology to understand how complex biological systems evolve and function. Our goal is to build transformative experimental tools that enable fundamental biological discovery while advancing the broader coral research community.


The successful candidate will join an exceptionally collaborative research environment with access to world-class core facilities in genomics, proteomics, advanced microscopy, bioinformatics, and aquatic animal husbandry. The Stowers Institute provides long-term institutional support for ambitious, high-risk, high-reward science, allowing investigators to pursue innovative research with exceptional technical and scientific resources.


Qualifications

Applicants should have:

  • A Ph.D. in developmental biology, genetics, molecular biology, genomics, cell biology, marine biology, or a closely related discipline.
  • An outstanding publication record demonstrating scientific creativity and productivity
  • Experience in one or more of the following areas: CRISPR genome engineering, molecular genetics, developmental biology, genomics, microscopy, embryology, computational biology, or marine biology
  • Excellent written and verbal communication skills and the ability to work both independently and collaboratively.


Prior experience with corals is not required. Candidates with strong backgrounds in genome engineering, functional genomics, stem cell biology, developmental genetics, or related disciplines are especially encouraged to apply.


The Gibson Laboratory

The Gibson Laboratory investigates the genetic and cellular mechanisms that underlie animal development and evolution, with a particular emphasis on cnidarians. Our research integrates functional genetics, genomics, quantitative imaging, and evolutionary biology to study developmental patterning, regeneration, symbiosis, biomineralization, and environmental adaptation.


The laboratory has pioneered functional genetic technologies in cnidarians, including CRISPR/Cas9 genome editing, shRNA-mediated gene knockdown, and transgenic methodologies in the sea anemone Nematostella vectensis. Building on this foundation, we are extending these approaches to reef-building corals to establish transformative genome engineering technologies for Acropora millepora.


Application

Applicants should submit:

  • Cover letter describing research interests and career goals
  • Curriculum vitae including publication list
  • Brief summary of previous research accomplishments
  • Contact information for three references


https://www.stowers.org/careers/postdoctoral-research-associate-reqid0002557


Review of applications will begin immediately and continue until the position is filled.


The Stowers Institute for Medical Research is an Equal Opportunity Employer committed to building a diverse scientific community. We welcome applications from candidates of all backgrounds.


The Stowers Institute

The Stowers Institute for Medical Research is an independent, not-for-profit biomedical research organization dedicated to fundamental biological discovery. Investigators benefit from generous institutional support, outstanding scientific infrastructure, and an exceptionally collaborative environment designed to foster innovative, high-impact research.