Danforth Center Launches HeatSmart Cassava for a Hotter World

$4.9 million Gates Foundation grant will advance research to protect photosynthesis and future harvests for a crop that helps sustain 800 million people worldwide 

 

ST. LOUIS, MO (August 20, 2026) As rising temperatures put growing pressure on a crop that helps sustain 800 million people, the Donald Danforth Plant Science Center and Lancaster University are launching an ambitious effort to help cassava keep producing in a hotter world. A $4,937,793 grant from the Gates Foundation will support HeatSmart Cassava, a four-year project to engineer and test a more heat-stable form of a protein that is essential to photosynthesis. 

 

Cassava is a cornerstone of food security in sub-Saharan Africa. Smallholder farmers rely on the crop because it can produce dependable yields in marginal soils and during intermittent drought, when other crops may fail. Yet temperatures above cassava’s optimal range can sharply reduce photosynthesis, lowering yields, and heat often arrives alongside drought—compounding the threat to productivity and livelihoods. 

 

The project, formally titled HeatSmart Cassava: Enhancing Photosynthetic Efficiency for a Warmer Future, runs from Aug. 3, 2026, through July 30, 2030. Getu Duguma, PhD, principal investigator at the Danforth Center, leads the project, with Nigel Taylor, PhD, the Danforth Center’s vice president for impact and Dorothy J. King Distinguished Investigator, serving as co-principal investigator. Elizabete Carmo-Silva, PhD, professor of crop physiology, leads the Lancaster University team. 

 

“For millions of families, cassava is more than a crop—it is a safeguard against hunger when conditions are difficult,” said Duguma. “This grant gives us the opportunity to strengthen one of the crop’s most heat-sensitive processes and test whether that change can help cassava continue turning sunlight into food when temperatures climb.” 

 

At the center of the work is Rubisco activase, a protein that keeps Rubisco—the enzyme plants use to capture carbon dioxide—working efficiently. Rubisco activase begins to lose function at high temperatures, creating a bottleneck in photosynthesis just when the plant is under the greatest stress. Earlier machine-learning and protein-engineering research identified versions of cassava Rubisco activase that remained stable in laboratory tests. HeatSmart Cassava will take the critical next step: introducing promising changes into cassava plants and testing their performance under heat and combined heat-and-drought conditions. 

 

Researchers will evaluate whether engineered plants can maintain photosynthetic efficiency, Rubisco activation, and yield at higher temperatures without sacrificing performance under normal conditions. The proof-of-concept study will also reveal whether strengthening Rubisco activase is sufficient on its own or must be paired with other traits. Either answer will provide a clearer path toward future heat-resilient cassava varieties for major cassava-growing regions of sub-Saharan Africa. 

 

The collaboration brings together the Danforth Center’s expertise in cassava biotechnology, gene editing, and plant transformation with Lancaster University’s leadership in photosynthesis, plant physiology, and protein engineering. In keeping with the Gates Foundation’s Global Access policy, the team will publish findings through open-access channels, deposit engineered sequences in public databases and make project materials available in accordance with global access principles. 

 

“A warming climate is already changing the conditions in which farmers must grow the food their families and communities depend on,” said Danforth Center President Giles Oldroyd, PhD. “HeatSmart Cassava reflects the heart of the Danforth Center mission: bringing leading-edge plant science to bear on urgent challenges and helping build a more food-secure future for all.”

About the Danforth Center
Founded in 1998, the Donald Danforth Plant Science Center is the largest independent nonprofit dedicated to plant science in the world. With a mission to improve the human condition through plant science, the Center conducts plant science research to feed people and improve human health, preserve and renew the environment, and enhance our region as a world center for plant science. For more information, visit danforthcenter.org(opens in new tab). 

 

Media Contact: Elizabeth McNulty | Vice President of Marketing & Communications, Donald Danforth Plant Science Center | emcnulty@danforthcenter.org