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Chemical composition of cardoon (Cynara cardunculus L. var. altilis) petioles as affected by plant growth stage

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Autore
Mandim F., Petropoulos S.A., Santos-Buelga C., Ferreira I.C.F.R., Barros L.
Data
2022
Language
en
DOI
10.1016/j.foodres.2022.111330
Soggetto
Oxalic acid
Palmitic acid
Sugars
Value engineering
Acid-free
Chemical compositions
Cynara cardunculus L
Free sugar
Growth cycle
Growth stages
Harvest time
Plant growth stages
Tocopherol
Tocopherol compositions
Linoleic acid
antioxidant
carbohydrate
fatty acid
tocopherol
chemistry
Cynara
Antioxidants
Carbohydrates
Cynara
Fatty Acids
Tocopherols
Elsevier Ltd
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Abstract
In the present study petioles were collected from cultivated cardoon (Cynara cardunculus L. var altilis) plants in central Greece at sixteen harvest dates (samples P1-P16) and nine growth stages (principal growth stages (PGS) 1–9). The main objective of this study was to study the influence of petioles’ growth cycle on their chemical composition. The lipidic content, fatty acids, free sugars, organic acids, and tocopherol composition were analyzed. A total of 27 fatty acids were identified, being the palmitic acid (C16:0, 12.42–50%) the most abundant, except for samples P4 and P5 where linoleic acid revealed the highest relative abundance (C18:2n6c, 46.5 and 39.05%, respectively). The α-, β-, and γ-tocopherols were the identified isoforms of vitamin E, with sample P1 recording the highest tocopherol content. The detected organic acids were oxalic, quinic, malic, citric, and fumaric acids with the highest content being observed in sample P1. Sucrose was the major sugar in all the analyzed samples, followed by fructose, glucose, trehalose, and raffinose. The obtained results allowed us to characterize the chemical composition of cardoon petioles throughout its growth cycle and, consequently, to valorize the species through the exploitation of underutilized plant tissues. © 2022 Elsevier Ltd
URI
http://hdl.handle.net/11615/76259
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