Dedicated to making tangible contributions

Enabling groundbreaking research for greater sustainability, productivity, and nutritional density

Agricultural Community

Illumina is dedicated to making tangible contributions to the agricultural community, with the goal of reducing hunger, malnutrition, and poverty. We are committed to enabling groundbreaking research that will result in increased sustainability, productivity, and nutritional density of agricultural species.

Reducing Global Hunger with Agrigenomics

Through the Illumina Greater Good Sequencing Grant Program, we are collaborating with the agricultural community to support research into creating a sustainable, nutritious food supply. The grant program is designed to help identify measures that can increase crop yields and improve livestock welfare and productivity to alleviate poverty and hunger in the developing world.

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Agricultural Greater Good Initiative

Applications for the 2020 Agricultural Greater Good Initiative grants are currently being accepted. The deadline for all 2020 applications is December 6, 2019.

The Grand Prize winner will receive 20 terabases of Illumina NovaSeq sequencing data on samples of your choice (check Terms and Conditions). The winner will be announced during the Illumina Workshop at PAG XXVIII in San Diego on January 11–15, 2020.

Agricultural Greater Good Initiative

This initiative recognizes researchers in the agricultural community using Illumina technology to help alleviate global hunger, malnutrition, and poverty.

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The grant program is open to basic researchers in agrigenomics at academic or nonprofit institutions. Priority will be given to research that increases sustainability, productivity, and nutritional density of the world’s food supply.

In 1000 words or less, provide an overview, a statement of work, and a description of the impact of your research. You may also include up to three figures, with legends, and a list of citations (not included in the word count).

In these sections, applicants should include:

  • Economic impact
  • Social impact
  • Collaborators
  • Nations represented
  • Technologies used
  • Other sources of funding

To be considered, all entries must:

  • Be in English
  • Be complete
  • Be an original work

A team of Illumina scientists and executives will judge all submissions. Each submission will be judged based on our view of how well the entry reflects scientific merit, innovation, and fit with the values of the Illumina Agricultural Greater Good Initiative.

Elena Ciani

University Bari, Italy and International Camel Consortium for Genetic Improvement and Conservation (ICC-GIC)

The mission of the ICC-GIC is to help scientists and professionals collaborate while promoting food security and the sustainable development of the camel sector.

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Gabriela "Vanina" Villanova

National University of Rosario's Aquatic Biotechnology Laboratory, Santa Fe, Argentina

Dr. Villanova and her team will use sequencing to develop a high-quality de novo genome assembly and a high-density SNP-based linkage map for pacú, a commercially important South American freshwater fish.

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G. Craig Yencho and Bode Olukolu

North Carolina State University, Department of Horticulture

G. Craig Yencho and Bode Olukolu are working to develop a whole-genome assembly and a SNP array for the nutritious sweet potato.

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Todd Mockler

Donald Danforth Plant Science Center

The Donald Danforth Plant Science Center aims to optimize breeding strategies for improving the yield and stress tolerance of grain sorghum, a critical source of nutrition in sub-Saharan Africa.

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Allen Van Deynze and Howard-Yana Shapiro

University of California Davis, African Orphan Crops Consortium

The African Orphan Crops Consortium is using genomics to advance the breeding process for orphan crop plant species, with a mission to curb malnutrition in African children.

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In 2017, Illumina donated a HiSeq 4000 System to the African Orphan Crops Consortium to help the organization complete its crop sequencing project. Members of the consortium hope that their work will help to improve the food supply and nourish families in need.

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Tim Close

University of California at Riverside

Timothy J. Close, PhD is studying the cowpea to maximize drought resistance of this important food source in West Africa.

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Max Rothschild

Iowa State University, Global Food Security Consortium

Illumina sheep and goat BeadChips help Iowa State University researchers identify selection signatures associated with heat and drought tolerance.

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Rajeev Varshney


Rajeev Varshney, PhD and other ICRISAT researchers are using Illumina sequencing to develop disease-resistant pigeonpea varieties.

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Appolinaire Djikeng

Biosciences eastern and central Africa – International Livestock Research Institute Hub (BecA-ILRI Hub)

Illumina sequencing is enabling BecA-ILRI Hub researchers to better understand two viruses responsible for infecting cassava crops throughout Africa.

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Todd Michael

Head of Genome Analysis Centre, Monsanto

By sequencing the baobab tree, Monsanto is providing scientists with the genomic resources to protect and sustain the baobab, while informing our understanding of tree evolution.

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Tad Sonstegard


The USDA is employing Illumina sequencing to uncover the genetic differences between the world's goat breeds, identifying mutations that enable goats to thrive in harsh environments.

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Genomics to Enhance Global Food Security
Genomics to Enhance Global Food Security

The African Orphan Crops Consortium is using genomics to address malnutrition in Africa.

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