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Strategies to Preserve Postharvest Quality of Horticultural Crops and Superficial Scald Control: From Diphenylamine Antioxidant Usage to More Recent Approaches

机译:保护园艺作物采后质量的策略和浅表烫伤:从二苯胺抗氧化用法到更新的方法

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摘要

Horticultural crops are vulnerable to several disorders, which affect their physiological and organoleptic quality. For about forty years, the control of physiological disorders (such as superficial scald) in horticultural crops, particularly in fruit, was achieved through the application of the antioxidant diphenylamine (DPA), usually combined with controlled atmosphere (CA) conditions. However, identification of DPA residues and metabolites in treated fruits, associated with their toxicity, banned the use of this antioxidant in Europe. This triggered the urgent need for novel and, ideally, natural and sustainable alternatives, combined with adequate storage conditions to protect cultivars from harmful agents. This review systematizes the state-of-the-art DPA application on several fresh cultivars, such as apples, pears, and vegetables (potatoes, spinach, etc.), as well as the possible mechanisms of the action and effects of DPA, emphasizing its antioxidant properties. Alternative methods to DPA are also discussed, as well as respective effects and limitations. Recent research on scald development molecular pathways are highlighted to open new non-chemical strategies opportunities. This appraisal shows that most of the current solutions have not lead to satisfactory commercial results; thus, further research aimed to understand the mechanisms underlying postharvest disorders and to design sustainable and safe solutions to improve horticultural products storage is needed.
机译:园艺作物易患几种疾病,这影响了它们的生理和感官质量。对于大约四年来,通过施用抗氧化二苯胺(DPA)来实现在园艺作物中的生理障碍(如肤浅鳞片)的控制,通常与受控气氛(CA)条件相结合。然而,鉴定与其毒性有关的治疗果实中DPA残基和代谢物,禁止在欧洲使用这种抗氧化剂。这引发了新颖,理想情况下,天然和可持续替代品的迫切需要,结合了足够的储存条件来保护来自有害药物的品种。本综述系统化了最先进的DPA应用,如苹果,梨和蔬菜(土豆,菠菜等),以及DPA的动作和影响的可能机制,强调其抗氧化性能。还讨论了DPA的替代方法,以及各自的效果和限制。突出了最近关于烫伤发展分子途径的研究,以开辟新的非化学策略机会。这项评估表明,大多数目前的解决方案都没有导致商业成果令人满意;因此,进一步的研究旨在了解采后紊乱的机制以及设计可持续和安全解决方案,以改善改善园艺产品储存。

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