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in Agriculture
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Quantitative trait loci analysis of seed-specialized metabolites reveals seed-specific flavonols and differential regulation of glycoalkaloid content in tomato

Citation:

Alseekh, S. ; Ofner, I. ; Liu, Z. ; Osorio, S. ; Vallarino, J. ; Last, R. L. ; Zamir, D. ; Tohge, T. ; Fernie, A. R. . Quantitative Trait Loci Analysis Of Seed-Specialized Metabolites Reveals Seed-Specific Flavonols And Differential Regulation Of Glycoalkaloid Content In Tomato. PLANT JOURNAL 2020, 103, 2007-2024.

Date Published:

SEP

Abstract:

Given the potential health benefits (and adverse effects), of polyphenolic and steroidal glycoalkaloids in the diet there is a growing interest in fully elucidating the genetic control of their levels in foodstuffs. Here we carried out profiling of the specialized metabolites in the seeds of theSolanum pennelliiintrogression lines identifying 338 putative metabolite quantitative trait loci (mQTL) for flavonoids, steroidal glycoalkaloids and further specialized metabolites. Two putative mQTL for flavonols and one for steroidal glycoalkaloids were cross-validated by evaluation of the metabolite content of recombinants harboring smaller introgression in the corresponding QTL interval or by analysis of lines from an independently derived backcross inbred line population. The steroidal glycoalkaloid mQTL was localized to a chromosomal region spanning 14 genes, including a previously defined steroidal glycoalkaloid gene cluster. The flavonoid mQTL was further validated via the use of transient and stable overexpression of theSolyc12g098600andSolyc12g096870genes, which encode seed-specific uridine 5 `-diphosphate-glycosyltransferases. The results are discussed in the context of our understanding of the accumulation of polyphenols and steroidal glycoalkaloids, and how this knowledge may be incorporated into breeding strategies aimed at improving nutritional aspects of plants as well as in fortifying them against abiotic stress.