Postharvest abscisic acid treatment modulates the primary metabolism and the biosynthesis of t-zeatin and ribofavin in zucchini fruit exposed to chilling stress
Identificadores
URI: https://hdl.handle.net/10481/83002Metadata
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Castro Cegrí, Alejandro; Carvajal, Fátima; Osorio, Sonia; Jamilena, Manuel; Garrido Garrido, Dolores; Palma Martín, Francisco JoséEditorial
Elsevier
Materia
ABA Cucurbita pepo Postharvest Vitamin B2 Cold stress Cytokinins
Date
2023-06-23Referencia bibliográfica
Postharvest abscisic acid treatment modulates the primary metabolism and the biosynthesis of t-zeatin and riboflavin in zucchini fruit exposed to chilling stress. 2023. Postharvest Biology and Technology, 204, 112457
Sponsorship
Departamento Fisiología Vegetal. Universidad de Granada. Grupo AGR-209; Grants (AGL2017- 82885-C2–2-R and PID2020-118080RB-C22) funded by MCIN/AEI/10.13039/501100011033; FPI grant EEBB-PRE-C-2018-0057 Funded by MCIN/AEI/ 10.13039/ 501100011033; European Union NextGenerationEU/PRTR; Funding for open access charge: Universidad de Granada / CBUAAbstract
Abscisic acid (ABA) plays an important role in the regulation of several stress responses such as drought, high salinity and low temperature being also proved as a key phytohormone for the acquisition of postharvest cold tolerance in zucchini fruit. Therefore, it would be of great interest to unravel the mechanisms implicated in the ABA response, using a metabolomic approach. The aim of this work has been to use a combination of metabolomic tools to identify the main metabolic pathways involved in ABA-mediated regulation of chilling tolerance in zucchini fruit. As a result of this study, it was found that ABA modulates the primary metabolism inducing the accumulation of some sugars, organic acids such as succinic acid and amino acids including histidine, serine, phenylalanine, glutamic acid and γ-aminobutyric acid, and that are involved in low-temperature tolerance. ABA treatment also activates the t-zeatin and riboflavin biosynthesis during the first days of cold storage which can be important signals in the ABA-mediated cold response to induce tolerance in zucchini fruit.