Chitosan–putrescine nanoparticle coating attenuates postharvest decay and maintains ROS scavenging system activity of strawberry cv. ‘Camarosa’ during cold storage

IF 2.2 4区 农林科学 Q2 HORTICULTURE Folia Horticulturae Pub Date : 2024-06-04 DOI:10.2478/fhort-2024-0009
Reza Bahmani, F. Razavi, Seyed Najmmaddin Mortazavi, Antonio Juárez-Maldonado, G. Gohari
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Abstract

The application of some natural compounds and cold storage can reduce postharvest loss and improve fruit quality and storability, which increase the fruit marketing period and exportation to distant markets. This study investigated the effectiveness of using coatings based on natural polymers to prolong the shelf life of fruits and protect their tissues from damage. Specifically, the researchers examined the impact of putrescine (PUT), chitosan (CTS) and chitosan–putrescine nano-composites (CTS-PUT NPs) on preserving the quality and reducing decay in strawberry. Strawberries were treated with either 1 mM or 2 mM of PUT, 0.1% CTS, 0.1% CTS-PUT NPs or distilled water at a temperature of 20°C for 5 min and then stored at 4°C for 12 days. At the end of the storage period, the lowest decay percentage was related to the treatments of CTS-PUT NPs and CTS, and the highest was observed in the control. The results showed that all coating treatments effectively prevented the excessive loss of ascorbic acid, fruit firmness, total soluble solids (TSS), and acidity (TA) compared to control at the end of the storage period. Additionally, strawberries treated with CTS-PUT NPs and CTS demonstrated the highest levels of total anthocyanin and total flavonoid. Antioxidant enzyme activities containing CAT and SOD were preserved at higher levels in treated strawberries than in the control during cold storage. These results confirm that the application of CTS and CTS-PUT NPs can effectively preserve fruit quality and prolong the longevity of strawberries during cold storage by enhancing their antioxidant capacity and scavenging free radicals.
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壳聚糖-普托瑞辛纳米粒子涂层可减轻草莓采后腐烂并维持 ROS 清除系统的活性。卡玛罗莎 "在冷藏期间的活性
应用一些天然化合物和冷藏可以减少采后损失,提高水果质量和贮藏性,从而延长水果的销售期和出口到远方市场的时间。本研究调查了使用基于天然聚合物的涂层来延长水果货架期和保护其组织免受损坏的有效性。具体来说,研究人员考察了腐霉利(PUT)、壳聚糖(CTS)和壳聚糖-腐霉利纳米复合材料(CTS-PUT NPs)对保持草莓品质和减少腐烂的影响。在 20°C 温度下,用 1 mM 或 2 mM 的 PUT、0.1% CTS、0.1% CTS-PUT NPs 或蒸馏水处理草莓 5 分钟,然后在 4°C 下贮藏 12 天。贮藏期结束时,CTS-PUT NPs 和 CTS 处理的腐烂率最低,而对照组的腐烂率最高。结果表明,与贮藏期结束时的对照组相比,所有涂层处理都能有效防止抗坏血酸、果实硬度、总可溶性固形物(TSS)和酸度(TA)的过度损失。此外,用 CTS-PUT NPs 和 CTS 处理过的草莓的总花青素和总黄酮含量最高。在冷藏期间,处理过的草莓中含有 CAT 和 SOD 的抗氧化酶活性保持在比对照组更高的水平。这些结果证实,施用 CTS 和 CTS-PUT NPs 可以提高草莓的抗氧化能力,清除自由基,从而有效保持草莓在冷藏期间的果实品质并延长其寿命。
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来源期刊
Folia Horticulturae
Folia Horticulturae Agricultural and Biological Sciences-Horticulture
CiteScore
3.40
自引率
0.00%
发文量
13
审稿时长
16 weeks
期刊介绍: Folia Horticulturae is an international, scientific journal published in English. It covers a broad research spectrum of aspects related to horticultural science that are of interest to a wide scientific community and have an impact on progress in both basic and applied research carried out with the use of horticultural crops and their products. The journal’s aim is to disseminate recent findings and serve as a forum for presenting views as well as for discussing important problems and prospects of modern horticulture, particularly in relation to sustainable production of high yield and quality of horticultural products, including their impact on human health.
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