UF Researchers Find Tomato Plants Resistant To Devastating Disease

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TITLE IMAGE: Target spot of tomatoes in the field at the UF/IFAS Gulf Coast Research and Education Center. Courtesy, Edgar Sierra, UF/IFAS.

University of Florida researchers may have found the key to developing tomatoes that can resist a catastrophic disease.

Although it has been around for 50 years, target spot of tomato has become increasingly problematic during the last few years. The disease causes lesions in both leaves and fruits. It’s commonly found in the tropics and the subtropics worldwide.

Target spot of tomato is caused by a fungus that infects hundreds of types of plants, including other crops like rubber trees, cotton, soybean and cucumbers.

Headshot of Edgar Sierra-Orozco, Graduate Research Assistant, UF/IFAS

Edgar Sierra-Orozco, Graduate Research Assistant, UF/IFAS

“No current tomato varieties resist the disease, and the only way to control it is through fungicides. However, target spot is increasingly resistant to several common fungicides, which drives us to develop resistant varieties,” said Edgar Sierra, who just completed his doctoral dissertation on target spot resistance for the UF/IFAS College of Agricultural and Life Sciences.

Working with his faculty advisors at the UF/IFAS Gulf Coast Research and Education Center, Sierra used growth rooms to screen tomato seedlings for disease and discover sources of resistance. Then he tested mature plants in the field to understand how useful this resistance may be. 

Results from field trials demonstrated that plants with target-spot resistance held up against the disease, even without fungicide sprays. 

“We wanted to prove that the resistance identified in seedlings would translate to the mature plants in the field, and that was successful,” Sierra said. “This is very exciting, especially given that it’s difficult to find plants that resist pathogens such as target spot. This is also a very challenging disease because it is very easy to confuse it with other common diseases like bacterial spot or early blight.” 

One of Sierra’s advisors is Sam Hutton, a UF/IFAS associate professor of horticultural sciences and a tomato breeder at GCREC. 

Dr. Sam Hutton, Associate Professor of Horticulture, UF/IFAS, in a field.

Dr. Sam Hutton, Associate Professor of Horticulture, UF/IFAS

“Edgar’s findings are leading to development of the very first commercial varieties with target spot resistance, which should help provide more effective disease control, reduce disease-management costs and reduce pesticide applications,” Hutton said. “More research into the underlying genetics behind this resistance will further improve our ability to develop resistant tomato varieties and may also lead to improved resistance to this disease in other crops.”

Fresh-market tomatoes are very popular worldwide, and farmers in the southeastern United States produce many of them. In Florida, fresh-market tomatoes bring in $400 million to $500 million annually. 

“Together with an integrated disease-management plan, tomato hybrids with this novel resistance will help curb this increasingly relevant problem for tomato growers,” Sierra said.

About UF/IFAS

The mission of the University of Florida Institute of Food and Agricultural Sciences (UF/IFAS) is to develop knowledge relevant to agricultural, human and natural resources and to make that knowledge available to sustain and enhance the quality of human life. With more than a dozen research facilities, 67 county Extension offices, and award-winning students and faculty in the UF College of Agricultural and Life Sciences, UF/IFAS brings science-based solutions to the state’s agricultural and natural resources industries, and all Florida residents.

ifas.ufl.edu  |  @UF_IFAS

Why Food Is Our Middle Name

Feeding a hungry world takes effort. Nearly everything we do comes back to food: from growing it and getting it to consumers, to conserving natural resources and supporting agricultural efforts. Explore all the reasons why at ifas.ufl.edu/food or follow #FoodIsOurMiddleName.

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