利用牛至纳米乳剂:对抗曲曲霉病引起的果实腐烂和保持芒果品质的新解决方案

IF 2.7 4区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
M. J. Gidado, Ahmad Anas Nagoor Gunny, Nor Amirah Azwa Norizal, Subash C. B. Gopinath, Chalermchai Wongs-Aree, Muaz Mohd Zaini Makhtar, Raja Hasnida Binti Raja Hashim, Mohd Hishamuddin Che Mat
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引用次数: 0

摘要

芒果是一种重要的全球水果作物,年产量超过10亿吨。然而,由于致病性真菌感染造成的采后损失相当大,并且由于持续使用合成杀菌剂而加剧,这带来了真菌耐药性和环境危害的风险。本研究评估了以牛颈草为基础的纳米乳对芒果采后病害的防治效果和品质保鲜效果。结果表明,矿砂纳米乳(矿砂- 51 -15)具有粒径小、分散性低、ph稳定等特点。FTIR分析鉴定了矿砂纳米乳的主要官能团,GC-MS分析显示矿砂纳米乳的主要成分为肉豆肉酸异丙酯(42.41%)、棕榈酸异丙酯(25.53%)、油酸(4.57%)、邻苯二甲酸二乙酯(3.84%)、estagole(2.09%)、2-(苯基亚甲基)辛烷(1.17%)、环戊烷乙酸(0.85%)、棕榈酸异丙酯(25.53%)、棕榈酸异丙酯(4.57%)、邻苯二甲酸二乙酯(3.84%)。苯甲酸(0.34%)和香豆素(0.26%)为次要成分。在体外实验中,Ore-S1-15纳米乳对曲霉病菌的抑菌效果较好,分生孢子抑制率为79.51±0.95%。此外,体内试验表明,受伤芒果的疾病发病率降低。Ore-S1-15纳米乳通过延缓颜色变化、减少重量损失和稳定保持总可溶性固形物来提高质量参数。因此,Ore-S1-15纳米乳作为一种有前景的、环保的人造杀菌剂替代品出现,用于控制芒果采后病害,在保持品质的同时延长保质期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing Oregano Nanoemulsion: A Novel Solution to Combat Curvalaria-Induced Fruit Rot and Preserve Mango Quality

Mango is a significant global fruit crop, producing over 1,000 million tonnes annually. However, postharvest losses due to pathogenic fungal infections are considerable, exacerbated by the continuous use of synthetic fungicides, which pose risks of fungal resistance and environmental harm. This study assessed the effectiveness of Origanum vulgare-based nanoemulsion against mango postharvest diseases and quality preservation. Results indicate that the O. vulgare nanoemulsion (Ore-S1-15) exhibited optimal properties, including small droplet size, low polydispersity, and stable pH. FTIR analysis identified key functional groups, while GC-MS results revealed prominent components with isopropyl myristate being the major constituent at 42.41%, followed by isopropyl palmitate (25.53%), oleic acid (4.57%), diethyl phthalate (3.84%), estagole (2.09%), 2-(phenylmethylene)-octanal (1.17%), cyclopentane acetic acid (0.85%), benzoic acid (0.34%), and coumarin (0.26%) as minor constituents. In vitro test of the Ore-S1-15 nanoemulsion against Curvularia sp. demonstrated significant antifungal activity, with 79.51 ± 0.95% conidia inhibition. Additionally, in vivo test showed a reduction in disease incidence on wounded mangoes. The Ore-S1-15 nanoemulsion enhanced quality parameters by delaying colour changes, reducing weight loss and steadily maintaining the total soluble solids. Thus, Ore-S1-15 nanoemulsion emerges as a promising and eco-friendly alternative to synthetic fungicides for controlling mango postharvest diseases and increasing shelf life while preserving quality.

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来源期刊
Journal of Cluster Science
Journal of Cluster Science 化学-无机化学与核化学
CiteScore
6.70
自引率
0.00%
发文量
166
审稿时长
3 months
期刊介绍: The journal publishes the following types of papers: (a) original and important research; (b) authoritative comprehensive reviews or short overviews of topics of current interest; (c) brief but urgent communications on new significant research; and (d) commentaries intended to foster the exchange of innovative or provocative ideas, and to encourage dialogue, amongst researchers working in different cluster disciplines.
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