The genetic architecture of tomato flavor variation through crop domestication and improvement
Xiang Li, Denise M. Tieman, Yue Huang, Luis Felipe V. Ferrão, Manoj Sapkota, Zhuoliang Lang, Anastasiya Kuhalskaya, Ronglin Hao, Pu Liu, Jing Chen, Saleh Alseekh, Marcio F. R. Resende, Esther van der Knaap, Xueren Yin, Harry J. Klee
Extensive selection for yield and disease resistance during tomato crop improvement has led to flavor loss in modern commercial tomatoes in comparison with heirloom varieties. To investigate the chemical and genetic architecture of tomato flavor through both domestication and improvement, we analyzed flavor-related chemicals across 558 globally collected accessions comprising wild relatives, semidomesticated and domesticated populations, including uncharacterized Latin American accessions. Key flavor volatiles exhibit major differences across accessions. A genome-wide association study was used to detect associations between genetic loci and flavor-related chemical contents, including sugars, acids, and volatiles. Multiple genetic loci linked to known genes encoding flavor metabolism enzymes, as well as many new loci, were identified. Among the newly identified loci, a gene encoding a previously uncharacterized lipase (