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Sorghum Breeding Genetics Jobs (NOW HIRING)

Sorghum Breeding Genetics information

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$25K

$69.4K

$99K

How much do sorghum breeding genetics jobs pay per year?

As of Sep 9, 2026, the average yearly pay for sorghum breeding genetics in the United States is $69,416.00, according to ZipRecruiter salary data. Most workers in this role earn between $38,500.00 and $94,000.00 per year, depending on experience, location, and employer.

What is sorghum breeding genetics?

Sorghum breeding genetics is the scientific field focused on improving sorghum plants through the study and manipulation of their genetic traits. Specialists in this area use traditional breeding methods and modern genetic techniques to develop new sorghum varieties with desirable characteristics, such as higher yield, drought tolerance, and disease resistance. This work is crucial for food security, especially in regions where sorghum is a staple crop. Sorghum breeders often collaborate with geneticists, agronomists, and farmers to ensure that new varieties meet agricultural and market needs.

What are the key skills and qualifications needed to thrive as a sorghum breeding geneticist?

To thrive as a Sorghum Breeding Geneticist, you need a solid background in plant genetics, crop science, and breeding methodologies, typically supported by an advanced degree in plant breeding, genetics, or a related field. Familiarity with molecular marker technologies, statistical genetics software (e.g., R, SAS), and modern genotyping platforms is essential. Strong analytical skills, attention to detail, and effective communication are vital soft skills for collaborating with research teams and conveying findings. These skills are crucial to drive innovation, develop improved sorghum varieties, and address agricultural challenges efficiently.

What are the main collaborative opportunities for professionals in sorghum breeding genetics within research and industry settings?

Professionals in sorghum breeding genetics often collaborate closely with agronomists, molecular biologists, data analysts, and extension specialists to develop improved sorghum varieties. These collaborations typically involve joint research projects, field trials, and sharing of genetic data to accelerate breeding outcomes. Additionally, partnerships with industry stakeholders such as seed companies and agricultural technology firms are common, providing opportunities to translate research findings into commercial products. Such teamwork not only enhances the impact of your work but also supports professional growth through exposure to multidisciplinary expertise.

What is the difference between Sorghum Breeding Genetics vs Sorghum Agronomist?

AspectSorghum Breeding GeneticsSorghum Agronomist
Primary FocusDeveloping and improving sorghum varieties through genetic researchOptimizing sorghum crop production and management practices
Required CredentialsDegree in Plant Genetics, Breeding, or related fieldDegree in Agronomy, Crop Science, or related field
Work EnvironmentResearch labs, breeding stations, field trialsFarms, research stations, consulting settings
Industry UsageResearch institutions, seed companies, biotech firmsFarming operations, agricultural consulting firms

While both roles involve working with sorghum, Sorghum Breeding Genetics focuses on developing new varieties through genetic research, whereas Sorghum Agronomists concentrate on crop management and optimizing yields in the field.

What other helpful pages are available for Sorghum Breeding Genetics?

Other pages related to Sorghum Breeding Genetics:

Infographic showing various Sorghum Breeding Genetics job openings in the United States as of September 2026, with employment types broken down into 2% As Needed, 74% Full Time, 20% Part Time, 3% Contract, and 1% Nights. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution, with an average salary of $69,416 per year, or $33.4 per hour.

Research Associate

Saint Louis, MO • On-site

DONALD DANFORTH PLANT SCIENCE CENTER
Biotechnology Research and Development • 201 - 500 employees

Full-time

Posted 21 days ago


Key responsibilities

  • Perform experimental analysis and tests required in discovery research.

  • Compile, analyze, and interpret research results, and supervise junior lab members engaged in these activities.

  • Serve as an in-lab project manager and primary contact for collaborative projects.


Job description

The Donald Danforth Plant Science Center is launching a multi-lab research initiative to improve food and cover crops for global food security, agricultural sustainability, and innovation. To support this effort, we are recruiting multiple full time benefits eligible scientists to join laboratories across the Center. These positions span a shared portfolio of projects that incorporate gene editing, plant transformation, quantitative genetics, and analytical biochemistry. 

This is a single call for several openings at our independent, nonprofit research institute located in St. Louis. We encourage mission-motivated candidates with backgrounds in any of the skill areas described below to apply; applications will be matched to the laboratory and project that best fit each candidate's expertise and interests. Successful candidates will work in a highly collaborative, well-resourced environment with access to the Center's world-class core facilities, including the Plant Growth Facility, Plant Transformation Facility, the Advanced Bioimaging Laboratory, the Bioanalytical Chemistry Facility, the Data Science Core, the Phenotyping Facility, and the Danforth Field Research Site.

Responsibilities: 

  • Performs experimental analysis and tests required in discovery research.
  • Compiles, analyzes andinterprets results and may supervise junior lab members engaged in these activities.  
  • Organize, train, assign, direct and check the work ofjunior employees. 
  • Serve as an in-lab project manager and primary contact for collaborative projects. 
  • Contributes to grant and contract proposals with PI, including gathering and analyzingcontributions from diverse participants, data compilation and original writing. 

Required knowledge, skills, and abilities:   

  • Basic understanding of chemistry and molecular biology lab techniques (e.g., pipetting, gel electrophoresis, PCR, spectrophotometry) 
  • Proficiency in scientific software and tools for data analysis and documentation (e.g., Excel, GraphPad, LIMS)  
  • Strong attention to detail and organizational skills  
  • Effective communication skills, both verbal and written 
  • Ability to follow instructions precisely and adhere to protocols  
  • Willingness to learn and adapt to new techniques and technologies  
  • Ability to work collaboratively in a team-oriented lab environment
  • Familiarity with basic statistical analysis and data interpretation  
  • Live the Danforth Center values: Collaboration, Diversity & Inclusion, Innovation, Integrity & Respect, Environmental Sustainability, and Stewardship 

Who we're looking for 

We are hiring across a range of participating laboratories and research areas. Depending on the position, projects address challenges such as increasing yield and nutritional quality in cassava, sorghum, cowpea, and maize; engineering disease and drought resilience; developing cover crops and perennial grains for regenerative agriculture; advancing plant transformation and gene-editing platforms.  

Gene editing and molecular biology 

  • CRISPR/Cas design and multiplexed editing in crop species, construct assembly, and molecular characterization of edited and transgenic lines. 
  • Plant transformation, tissue culture, and regeneration, including work with recalcitrant genotypes and morphogenic regulator systems. 
  • Trait engineering through overexpression, targeted knockout, and gene stacking (e.g., disease resistance, biofortification). 

Genomics, computational biology, and AI 

  • Quantitative and population genetics, GWAS, genomic and phenomic prediction, and pangenome-enabled analyses. 
  • Machine learning and computer vision applied to image, genomic, environmental, and process data — including predictive models for transformation efficiency and decision-support tools. 
  • Bioinformatics and data integration across multimodal datasets, with strong programming skills (e.g., Python, R) and reproducible workflows. 

Plant Biology, physiology, biochemistry, soil science, and microbiology 

  • In-field high-throughput phenotyping to evaluate developmental timing and trajectories, reproductive and vegetative yield, below-ground architecture and root anatomy, and senescence dynamics. 
  • Analytical characterization of grain and root quality — protein digestibility, amino acid profiling, mineral and phytate content, and processing effects. 
  • Plant–microbe interactions, including plant-virus interactions, arbuscular mycorrhizal fungi, nitrogen-fixing bacteria, and engineered microbial consortia for soil health. 
  • Crop physiology related to regenerative agriculture systems, nutrient-use efficiency, water-use efficiency, drought and heat resilience, and stress tolerance. 
  • Plant–soil interface dynamics, including the characterization of soil structure, chemical composition, and gas flux profiles within diverse cash and cover crop systems. 

Qualifications 

  • A Master’s degree with extensive experience in plant biology, molecular biology, genetics, plant breeding, physiology, biochemistry, computational biology, agricultural engineering, agroecology, or a closely related field.  
  • A record of scientific productivity, including peer-reviewed publications.   
  • Specific requirements vary by laboratory; relevant hands-on experience in one or more of the skill areas above is expected for each position. 

How to apply 

Submit a cover letter (clearly indicating your areas of expertise and any project areas of particular interest), a curriculum vitae, and contact information for three references through the Danforth Center careers portal at danforthcenter.org/careers. Applications will be reviewed on a rolling basis until all positions are filled.