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Determination of glucosinolates and phenolic compounds in rocket salad by HPLC-DAD–MS: Evaluation of Eruca sativa Mill. and Diplotaxis tenuifolia L. genetic resources
Authors:Federica Pasini  Vito Verardo  Maria Fiorenza Caboni  Luigi Filippo D’Antuono
Affiliation:1. Department of Food Science, Faculty of Agriculture, Food Science University Campus, University of Bologna, Piazza Goidanich 60, 47521 Cesena, FC, Italy;2. Department of Agroenvironmental Science and Technology, Faculty of Agriculture, Food Science University Campus, University of Bologna, Piazza Goidanich 60, 47521 Cesena, FC, Italy
Abstract:The glucosinolate and phenolic profiles of 37 rocket salad accessions (32 Eruca sativa and 5 Diplotaxis tenuifolia) were obtained by liquid chromatography–mass spectrometry. Eleven desulpho-glucosinolates (DS-GLSs) were isolated and the glucosinolate profiles did not differ between the two species. Total DS-GLS content, expressed as sinigrin equivalents (SE) revealed a certain variability, ranging from 0.76 to 2.46 g kg−1 d.w. but, again, the quantitative analysis did not discriminates Eruca from Diplotaxis. The polyphenol evaluation by HPLC-DAD–MS allowed the identification of two different classes of compounds in the two rocket salad species. Qualitative differences were observed between the polyphenol profiles at specific level: quercetin derivatives were the main phenolics of Diplotaxis, whereas kaempferol derivatives characterised Eruca samples. The contents of total flavonoids determined as rutin equivalents (RE) ranged from 4.68 to 31.39 g kg−1 d.w. Kaempferol-3,4′-diglucoside (71.4–82.2%) and isorhamnetin-3,4′-di-glucoside (7.8–18.4%) were always isolated as first and second more abundant phenolic compounds in Eruca samples. No marker phenolic compounds were isolated in Diplotaxis samples.
Keywords:Rocket salad  Eruca sativa Mill    Diplotaxis tenuifolia L    Glucosinolates  Phenolic compounds  HPLC-DAD&ndash  MS
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