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Ripening-dependent changes in key bioactive compounds of some sea buckthorn cultivars implications for harvest optimization

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dc.contributor.author CHETRARIU, Ancuța
dc.contributor.author DIANU, Irina
dc.contributor.author MACARI, Artur
dc.contributor.author OROIAN, Mircea Adrian
dc.contributor.author NETREBA, Natalia
dc.contributor.author AVRĂMIA, Ionuț
dc.contributor.author SANDU, Iuliana
dc.contributor.author DABIJA, Adriana
dc.date.accessioned 2026-09-17T07:57:03Z
dc.date.available 2026-09-17T07:57:03Z
dc.date.issued 2026
dc.identifier.citation CHETRARIU, Ancuța; Irina DIANU; Artur MACARI; Mircea Adrian OROIAN; Natalia NETREBA; Ionuț AVRĂMIA; Iuliana SANDU and Adriana DABIJA. Ripening-dependent changes in key bioactive compounds of some sea buckthorn cultivars implications for harvest optimization. In: The 21th International Conference of Constructive Design and Technological Optimization in Machine Building Field: Conference Proceedings Abstracts. OPROTEH 2026, Bacău, România, 20-22 may, 2026. Bacău: Alma Mater, 2026, pp. 164-165. ISSN 2457-3388. en_US
dc.identifier.issn 2457-3388
dc.identifier.uri https://repository.utm.md/handle/5014/37148
dc.description.abstract Sea buckthorn is a sun-loving species prized for its nutrient-dense orange berries, which are extensively utilized in the pharmaceutical, food, and agricultural sectors. This study investigated four cultivars-Dora, Cora, Mara, and Clara-cultivated in the Republic of Moldova over a 60-day period (August to September), with a focus on the evolution of key ripening indicators: vitamin C, total carotenoids, and organic acids. Ascorbic acid, a crucial bioactive compound, declined steadily as the fruits matured. The Clara, Dora, and Mara cultivars showed an approximately 2.5-fold reduction in concentration, whereas the Cora cultivar exhibited a more pronounced, nearly fourfold decrease, indicating notable genetic differences in nutrient retention. Carotenoid accumulation, responsible for the berries’ antioxidant properties, displayed cultivar-specific patterns: Clara, Dora, and Mara reached peak levels in late August, followed by a decline due to overripening, while the Cora cultivar showed a continuous increase, reaching its maximum at the end of the study period. Malic acid was identified as the predominant organic acid. In addition to shaping the berries’ characteristic tart and astringent flavor, it contributes to stabilizing the antioxidant matrix and enhancing the bioavailability of polyphenols. Overall, the results highlight that the stage of ripening plays a decisive role in defining the biochemical profile of sea buckthorn. The distinct responses observed among the cultivars suggest that harvest timing should be carefully tailored to the intended industrial purpose, whether to maximize vitamin C content or to optimize carotenoid extraction. en_US
dc.language.iso en en_US
dc.publisher “Vasile Alecsandri” University of Bacau en_US
dc.rights Attribution-NonCommercial-NoDerivs 3.0 United States *
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/3.0/us/ *
dc.subject bioactive compounds en_US
dc.subject carotenoids en_US
dc.subject postharvest ripening en_US
dc.subject Hippophae rhamnoides en_US
dc.subject sea buckthorn en_US
dc.subject compuși bioactive en_US
dc.subject caratenoide en_US
dc.subject cătină alba en_US
dc.subject soiuri en_US
dc.title Ripening-dependent changes in key bioactive compounds of some sea buckthorn cultivars implications for harvest optimization en_US
dc.type Article en_US


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