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Pectic and Galacturonic Acid Oligosaccharides on the Postharvest Performance of Citrus Fruits

机译:果胶和半乳糖醛酸寡糖对柑橘果实采后性能的影响

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摘要

Orange [Citrus sinensis (L.) Osbeck] and grapefruit (Citrus paradisi Macfad) citrus fruits are prone to develop different peel physiological disorders caused by storage at both chilling and nonchilling temperatures. The effect of galacturonic acid oligosaccharides (GAOs) and pectic oligosaccharides (POs) in reducing postharvest nonchilling peel pitting (NCPP), decay, and chilling injury (CI) in orange cv. Navelina and the effect of POs in reducing CI in grapefruit cv. Rio Red, were investigated. The incidence of these disorders was examined in fruits stored at chilling and nonchilling temperatures and at 90% to 95% relative humidity (RH). POs showed a better efficacy than GAOs in reducing postharvest losses in orange. The POs were able to reduce NCPP and decay in ‘Navelina’ fruits stored at 20 °C, irrespective of the fruit maturity stage. The application of 10 g·L−1 POs also reduced CI and the chilling-induced ethylene production in oranges and grapefruits maintained at the chilling temperature. Likewise, the decrease in ethylene production found in ‘Navelina’ fruits that developed NCPP during storage at the nonchilling temperature was related to lower peel damage. Moreover, results showed that POs do not induce an increase in ethylene when fruit are stored under conditions that do not cause stress-related injury to fruit. Therefore, POs efficacy in reducing postharvest physiological disorders is not likely mediated by ethylene. Overall results indicate that the application of POs may be an acceptable alternative to mitigate postharvest losses of citrus fruits.
机译:橙色[Citrus sinensis(L.)Osbeck]和葡萄柚(Citrus paradisi Macfad)柑橘类水果容易在冷藏和非冷藏温度下发展,从而引起不同的果皮生理异常。半乳糖醛酸寡糖(GAOs)和果胶寡糖(POs)在减少橙色简历中收获后非冷皮点蚀(NCPP),腐烂和冷害(CI)中的作用。 Navelina和PO降低柚子简历中CI的作用。里约雷德(Rio Red)被调查。在冷藏和非冷藏温度以及90%至95%相对湿度(RH)下储存的水果中检查了这些疾病的发生率。在减少橘子收获后的损失方面,POs的功效优于GAO。 PO能够降低20℃储存的'Navelina'果实的NCPP和衰变,而与果实成熟阶段无关。 10 g·L-1 POs的使用还降低了CI,并且在保持低温的橙子和葡萄柚中,低温诱导的乙烯生成也降低了CI。同样地,在非冷藏温度下储存期间形成NCPP的“ Navelina”果实中发现的乙烯产量下降与皮损降低有关。此外,结果表明,在不对果实造成压力相关伤害的条件下储存水果时,POs不会引起乙烯的增加。因此,POs减少采后生理疾病的功效不太可能由乙烯介导。总体结果表明,PO的施用可能是减轻柑橘类水果收获后损失的一种可接受的替代方法。

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