CIMMYT is a cutting edge, non-profit, international organization dedicated to solving tomorrow's problems today. It is entrusted with fostering improved quantity, quality, and dependability of production systems and basic cereals such as maize, wheat, triticale, sorghum, millets, and associated crops through applied agricultural science, particularly in the Global South, through building strong partnerships. This combination enhances the livelihood trajectories and resilience of millions of resource-poor farmers, while working towards a more productive, inclusive, and resilient agrifood system within planetary boundaries.
For more information, visit https://www.cimmyt.org/.
CIMMYT is implementing a project to enhance the speed and precision of dryland crop breeding through artificial intelligence, genomic prediction, rapid generation advancement, and rapid cycling genomic selection (RCGS). The project aims to radically shorten breeding cycles, increase genetic gain, and improve the delivery of climate-resilient, market-preferred varieties for dryland farming systems.
A key part of the project focuses on testing rapid cycling schemes such as recycling at very early generations (F1) and using haplotype-based cross prediction to select individuals to generate succeeding cycles. The project also emphasizes learning loops, where early-generation predictions are compared with conventional fixed line predictions and realized field performance to refine breeding decisions and improve future cycles.
The Ph.D. scholar will generate research evidence on whether rapid cycling and AI-assisted breeding improve breeding efficiency, prediction accuracy, and genetic gain in dryland crops. The research will focus on testing hypotheses related to recurrent selection, F1-based rapid cycling, sparse testing, and the translation of genomic predictions into realized field performance.
This position will be based at Kiboko, Kenya.
Duration: 3–4 years, subject to university registration and project funding
Research Focus:
The scholar’s research may address questions such as:
Key Responsibilities:
Expected Outputs:
Supervision and Collaboration:
The Ph.D. scholar will be supervised by a CIMMYT scientist and a university academic supervisor. The scholar will work closely with the project lead scientist and staff on activities related to RCGS validation and pipeline implementation.
Eligibility Criteria:
Conditions of Award:
The successful scholar will be managed by the CIMMYT Academy. The scholarship will provide support for tuition, research activities, and stipend according to project and CIMMYT Academy policies. The scholar must comply with the requirements of the host university and CIMMYT policies and procedures.
Candidates must apply online. Applications must include the following documents: CV, cover letter, proof of admission to a PhD program in Plant Breeding, Genetics, or a related field, and an endorsement letter from their university professor or advisor.
Please note that only short-listed candidates will be contacted.
This position will remain open until filled.
CIMMYT is an equal opportunity employer. It fosters a multicultural work environment that values gender equality, teamwork, and respect for diversity. Women are encouraged to apply.
Requirements
Benefits
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