News | May 30, 2012
Tomato Genome Becomes Fully Sequenced – Paving The Way For Healthier Fruits And Vegetables
Boyce Thompson Institute leads U.S. arm of international consortium
For the first time, the genome of the tomato, Solanum lycopersicum, has been decoded. It becomes an important step toward improving yield, nutrition, disease resistance, taste and color of the tomato and other crops. The full genome sequence, as well as the sequence of a wild relative, is jointly published in the latest issue of the journal Nature (May 31, 2012).
Specifically, the “Heinz 1706” genome was sequenced.
The publication caps years of work by members of the Tomato Genomics Consortium, an international collaboration between the United States, China, Japan, Germany, France, United Kingdom, Italy, India, Spain, South Korea, the Netherlands, Belgium, Argentina, Israel and others.
James Giovannoni, a scientist at the Boyce Thompson Institute for Plant Research (located on the campus of Cornell) and the U.S. Department of Agriculture, leads the U.S. tomato sequencing team, which includes researchers at six universities.
Consortium researchers report that tomatoes possess some 35,000 genes arranged on 12 chromosomes. “For any characteristic of the tomato, whether it’s taste, natural pest resistance or nutritional content, we’ve captured virtually all those genes,” says Giovannoni.
The sequences of these genes and their arrangement on the chromosomes are described in the Nature article, “The tomato genome sequence provides insights into fleshy fruit evolution,” which is information that allows researchers to move at a quicker pace and plant breeders to produce new varieties with specific desired characteristics.
“Tomato genetics underlies the potential for improved taste every home gardener knows and every supermarket shopper desires and the genome sequence will help solve this and many other issues in tomato production and quality,” says Giovannoni.
Now that the genome sequence of one variety of tomato is known, it will also be easier and much less expensive for seed companies and plant breeders to sequence other varieties for research and development, he added. Whereas the first tomato genome sequence came at a cost of millions of dollars, subsequent ones might now only cost $10,000 - $15,000, by building on these initial findings. To provide access to the gene sequences of the tomato and related species, Boyce Thompson Institute scientist Lukas Mueller and his team have created an interactive website (www.solgenomics.net). In the United States, Boyce Thompson Institute scientists Zhangjun Fei and Joyce Van Eck contributed to the sequence and its analysis. Other U.S. institutions involved: Colorado State, University of Florida, University of Oklahoma, University of Georgia, University of Arizona and the Cold Spring Harbor Laboratory.
The sequencing of the tomato genome has implications for other plant species. Strawberries, apples, melons, bananas and many other fleshy fruits, share some characteristics with tomatoes, so information about the genes and pathways involved in fruit ripening can potentially be applied to them, helping to improve food quality and reduce costs.
“Now we can start asking a lot more interesting questions about fruit biology, disease resistance, root development and nutritional qualities,” Giovannoni says. Tomatoes represent a $2 billion market in the United States alone. The USDA estimates that Americans consume, on average, more than 72 pounds of tomato products annually.
The sequencing would not have been possible without the work of Cornell’s Steven Tanksley and Boyce Thompson’s Greg Martin in the 1990s. Tanksley, Martin and other Ithaca scientists developed genetic maps and other molecular tools for tomatoes to study mechanisms of disease resistance, and those tools ultimately paved the way for the consortium’s sequencing efforts.
Tomato genome and sequencing research in the United States was supported by the National Science Foundation and the USDA. The Boyce Thompson Institute is located on the Cornell campus, and it was founded by William Boyce Thompson in 1924. It is a private, non-profit institution that explores fundamental aspects of plant biology to positively impact society.
SOURCE: Cornell University
