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Genome Mapping Jobs in Michigan (NOW HIRING)

... genome, with a focus on metabolic traits. We combine statistical genetics, single-cell and single ... Core activities include cell-type-specific e/caQTL mapping in single-nucleus multi-omic data (snRNA ...

... their genome (genetic suppression) or due to protective molecules found in an animal's diet or ... mapping suppressor mutations from genetic screens), however, we can train on all aspects of this ...

Genome Mapping information

Is genome mapping a good career?

Genome mapping is a specialized field within genetics and bioinformatics that involves analyzing DNA sequences to understand genetic structures. It offers opportunities in research, healthcare, and biotechnology, often requiring skills in molecular biology, data analysis, and laboratory techniques. The career can be rewarding for those interested in scientific discovery and innovation, with job prospects growing as genomics advances.

What is genome mapping?

Genome mapping is the process of determining the locations of genes and genetic markers within the chromosomes of an organism. It helps scientists understand the structure and organization of the genome, which can be crucial for identifying genes associated with diseases, traits, and evolutionary history. Genome mapping is used in research, medicine, and agriculture to support genetic analysis and improve breeding or treatment strategies. The process involves various techniques, including sequencing, molecular markers, and computational analysis.

What are the key skills and qualifications needed to thrive as a genome mapping specialist?

To thrive as a Genome Mapping Specialist, you need a solid background in genetics, molecular biology, and bioinformatics, typically supported by a relevant degree such as in biology or genomics. Familiarity with genomic sequencing technologies, laboratory information management systems (LIMS), and data analysis software like BLAST or Genome Browser is essential. Strong analytical thinking, attention to detail, and effective collaboration skills set top performers apart in this field. These skills are crucial for accurately mapping genetic sequences, interpreting complex data, and driving meaningful insights in genomic research.

How to become a genome mapping analyst?

To become a genome mapping analyst, typically a bachelor's degree in genetics, biology, bioinformatics, or a related field is required. Gaining experience with genome sequencing tools, data analysis software, and programming languages like Python or R is important, along with knowledge of molecular biology and genetics. Advanced roles may require a master's or Ph.D. and certifications in bioinformatics or related areas.

What is the difference between Genome Mapping vs Genetic Technician?

AspectGenome MappingGenetic Technician
Required CredentialsAdvanced degrees in genetics or genomics, specialized trainingAssociate's or Bachelor's degree in biology or genetics
Work EnvironmentResearch labs, biotech companies, academic institutionsLaboratories, hospitals, research facilities
Industry UsageGenomics research, personalized medicine, biotech developmentSample processing, data collection, assisting in genetic testing

Genome Mapping involves advanced research and analysis of entire genomes, often requiring specialized degrees and working in research-focused environments. Genetic Technicians support genetic testing and data collection, typically with less formal education, working in clinical or lab settings. Both roles are essential in genetics but differ in scope, credentials, and work environment.

What job involves genome mapping?

A genome mapping technician or scientist is responsible for analyzing and constructing detailed maps of an organism's genome using laboratory techniques and bioinformatics tools. These roles often require knowledge of genetics, molecular biology, and specialized software, and may involve working in research laboratories or biotech companies.

What are some common challenges faced by professionals in genome mapping, and how can they be addressed?

Professionals in genome mapping often encounter challenges such as managing vast amounts of genomic data, ensuring data accuracy, and keeping up with rapidly evolving sequencing technologies. Collaborating closely with bioinformaticians, geneticists, and IT specialists can help address data management and analysis hurdles. Staying current with industry advancements through workshops and professional networks is also important for overcoming technical challenges and maintaining best practices.

What cities in Michigan are hiring for Genome Mapping jobs?

Cities in Michigan with the most Genome Mapping job openings:

Full-time

Re-posted 17 days ago


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Job description

How to Apply
Please submit a CV, a cover letter describing your research experience, your scientific interests, and your specific reasons for applying to this lab, and contact information for three references. Cover letters that engage with the lab?s published work and articulate a research vision will receive strongest consideration. Review of applications will begin immediately and continue until the position is filled.
Who We Are
The Parker Lab generates mechanistic knowledge about how disease susceptibility is encoded in the non-coding genome, with a focus on metabolic traits. We combine statistical genetics, single-cell and single-nucleus multi-omics, and computational genomics to translate GWAS signals into biology. Our work spans method development, data generation (snRNA-seq, snATAC-seq, MPRA, spatial omics), and integrative analysis at scale, and we work closely with collaborators across the diabetes research community. Dr. Parker also directs the Epigenomic Metabolic Medicine Center (EM?C) at the University of Michigan.
We are a group of roughly 20 scientists, and we take lab culture seriously. We value openness, scientific rigor, direct and collegial communication, and good humor. We invest in each other through regular mentorship, quarterly wellness meetings, and an annual lab retreat. For more information, see http://theparkerlab.org.
Researchers from traditionally underrepresented groups are highly encouraged to apply. We value inclusivity.
Mission Statement
Michigan Medicine improves the health of patients, populations and communities through excellence in education, patient care, community service, research and technology development, and through leadership activities in Michigan, nationally and internationally. Our mission is guided by our Strategic Principles and has three critical components; patient care, education and research that together enhance our contribution to society.
Job Summary
Postdoctoral Fellow in Statistical Genetics and Regulatory Genomics
The Parker Lab at the University of Michigan (http://theparkerlab.org) is recruiting a Postdoctoral Fellow to lead statistical genetics research on type 2 diabetes and cardiometabolic disease. We are a computationally focused lab in the Departments of Computational Medicine & Bioinformatics, Human Genetics, and Biostatistics, working at the interface of GWAS, single-cell multi-omics, and tissue biology.
The successful candidate will own a research program centered on connecting non-coding disease variants to their cell- and context-specific regulatory mechanisms. Core activities include cell-type-specific e/caQTL mapping in single-nucleus multi-omic data (snRNA-seq and snATAC-seq), colocalization and fine-mapping against T2D and related trait GWAS, Mendelian randomization, heritability partitioning (for example, LDSC and related approaches), and regulatory network inference. Tissues of focus include pancreatic islets and skeletal muscle, with opportunities to extend to other metabolic tissues through active collaborations. The position has scientific latitude: we expect the postdoc to drive analytical strategy, make and defend methods choices, interpret results critically, and shape the direction of their projects in partnership with team.
The successful candidate will also help mentor graduate students, rotation students, and other trainees, and contribute to grant writing and manuscript preparation. This position is well suited for applicants who see a postdoc as the launching point for an independent academic research program.
Required Qualifications*
  • PhD (completed or imminent) in Biostatistics, Statistical Genetics, Computational Biology, Bioinformatics, Human Genetics, Computer Science, or a closely related quantitative field.
  • Demonstrated depth in statistical genetics methods, such as GWAS analysis, fine-mapping (for example, SuSiE), colocalization, Mendelian randomization, heritability estimation, or QTL mapping. We prioritize methodological understanding over tool familiarity.
  • Strong programming skills (R and/or Python) and comfort in a high-performance computing environment.
  • Evidence of analytical independence: the ability to define a question, choose appropriate methods, interpret results skeptically, troubleshoot unexpected findings, and revise course.
  • A publication record appropriate to career stage, including at least one first-author paper or preprint.
  • Excellent written and oral communication, including being both collaborative and coachable.
  • English language proficiency.

Desired Qualifications*
  • Experience with single-cell or single-nucleus multi-omic data (snRNA-seq, snATAC-seq, multiome).
  • Familiarity with regulatory genomics, chromatin data, or regulatory network inference.
  • Prior work on metabolic, endocrine, or cardiometabolic disease.

We welcome applicants with strong statistical genetics foundations who are ready to extend into single-cell data, and we also consider applicants with single-cell expertise who have a clear plan to develop statistical genetics depth.
Modes of Work
Positions that are eligible for hybrid or mobile/remote work mode are at the discretion of the hiring department. Work agreements are reviewed annually at a minimum and are subject to change at any time, and for any reason, throughout the course of employment. Learn more about the work modes .
Background Screening
Michigan Medicine conducts background screening and pre-employment drug testing on job candidates upon acceptance of a contingent job offer and may use a third party administrator to conduct background screenings. Background screenings are performed in compliance with the Fair Credit Report Act. Pre-employment drug testing applies to all selected candidates, including new or additional faculty and staff appointments, as well as transfers from other U-M campuses.
Application Deadline
Job openings are posted for a minimum of seven calendar days. The review and selection process may begin as early as the eighth day after posting. This opening may be removed from posting boards and filled anytime after the minimum posting period has ended.
U-M EEO Statement
The University of Michigan is an Equal Opportunity Employer. We are committed to providing an environment of mutual respect where equal employment opportunities are available to all applicants, including protected veterans and individuals with disabilities.
Job Detail
Job Opening ID
272360
Working Title
RESEARCH FELLOW
Job Title
RESEARCH FELLOW
Work Location
Ann Arbor Campus
Ann Arbor, MI
Modes of Work
Onsite
Full/Part Time
Full-Time
Regular/Temporary
Regular
FLSA Status
Exempt
Organizational Group
Medical School
Department
MM Comp Med and Bioinformatics
Posting Begin/End Date
8/12/2026 - 10/12/2026
Career Interest
Research Fellows

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About University of Michigan

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The University of Michigan (U-M), based in Ann Arbor, MI, US, is one of America's most esteemed institutions in higher education. Established in 1817, it presides in the industry of education and research, providing a range of services including undergraduate, graduate, and professional education programs. Complementing this is an extensive research activity that has significantly contributed to various fields, from healthcare to engineering, humanities to sports. Upholding its mission "to serve the people of Michigan and the world through preeminence in creating, communicating, preserving and applying knowledge, art, and academic values", U-M consistently ranks among the top universities globally, a testament to its tradition of excellence in learning and research, and a deep commitment to innovation and discovery.

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Headquarters location

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Year founded

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