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纳米壳聚糖和迷迭香酸介导的硒纳米粒子通过纳米生物技术控制柿果黑腐病的创新方法

Innovative Approach for Controlling Black Rot of Persimmon Fruits by Means of Nanobiotechnology from Nanochitosan and Rosmarinic Acid-Mediated Selenium Nanoparticles.

作者信息

Salem Mohamed F, Tayel Ahmed A, Alzuaibr Fahad Mohammed, Bakr Ramadan A

机构信息

Department of Environmental Biotechnology, Genetic Engineering and Biotechnology Research Institute, University of Sadat City, El-Sadat City 32897, Egypt.

Department of Fish Processing and Biotechnology, Faculty of Aquatic and Fisheries Sciences, Kafrelsheikh University, Kafrelsheikh City 33516, Egypt.

出版信息

Polymers (Basel). 2022 May 23;14(10):2116. doi: 10.3390/polym14102116.

Abstract

The protection of persimmon fruits ( L.) from postharvest fungal infestation with (; black rot) is a major agricultural and economic demand worldwide. Edible coatings (ECs) based on biopolymers and phytocompounds were proposed to maintain fruit quality, especially with nanomaterials' applications. Chitosan nanoparticles (NCt), rosmarinic acid bio-mediated selenium nanoparticles (RA/SeNPs) and their composites were produced, characterized and evaluated as ECs for managing persimmon black rot. The constructed NCt, RA/SeNPs and NCt/RA/SeNPs composite had diminished particles' size diameters. The ECs solution of 1% NCt and NCt/RA/SeNPs composite led to a significant reduction of radial growth in vitro, with 77.4 and 97.2%, respectively. The most powerful ECs formula contained 10 mg/mL from NCt/RA/SeNPs composite, which significantly reduced fungal growth than imazalil fungicide. The coating of persimmon with nanoparticles-based ECs resulted in a significant reduction of black rot disease severity and incidence in artificially infected fruits; the treatment with 1% of NCt/RA/SeNPs could completely (100%) hinder disease incidence and severity in coated fruits, whereas imazalil reduced them by 88.6 and 73.4%, respectively. The firmness of fruits is greatly augmented after ECs treatments, particularly with formulated coatings with 1% NCt/RA/SeNPs composite, which maintain fruits firmness by 85.7%. The produced ECs in the current study, based on NCt/RA/SeNPs composite, are greatly recommended as innovatively constructed human-friendly matrix to suppress the postharvest destructive fungi () and maintain the shelf-life and quality of persimmon fruits.

摘要

防止柿果(柿属)采后受到真菌侵染(如黑腐病菌)是全球主要的农业和经济需求。基于生物聚合物和植物化合物的可食用涂层被提议用于保持果实品质,尤其是在纳米材料应用的情况下。制备了壳聚糖纳米颗粒(NCt)、迷迭香酸生物介导的硒纳米颗粒(RA/SeNPs)及其复合材料,并对其进行了表征和评估,作为防治柿果黑腐病的可食用涂层。构建的NCt、RA/SeNPs和NCt/RA/SeNPs复合材料的粒径减小。1% NCt和NCt/RA/SeNPs复合材料的可食用涂层溶液在体外导致黑腐病菌的径向生长显著降低,分别为77.4%和97.2%。最有效的可食用涂层配方含有10 mg/mL的NCt/RA/SeNPs复合材料,其显著降低真菌生长,优于抑霉唑杀菌剂。用基于纳米颗粒的可食用涂层处理柿果,可显著降低人工感染果实的黑腐病严重程度和发病率;用1%的NCt/RA/SeNPs处理可完全(100%)阻止涂层果实发病和病情发展,而抑霉唑分别降低了88.6%和73.4%。可食用涂层处理后,果实硬度显著提高,特别是含有1% NCt/RA/SeNPs复合材料的配方涂层,可使果实硬度保持85.7%。本研究中基于NCt/RA/SeNPs复合材料制备的可食用涂层,强烈推荐作为创新构建的对人体友好的基质,以抑制采后破坏性真菌(黑腐病菌),并保持柿果的货架期和品质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0ef/9143107/6d5b2a2f94da/polymers-14-02116-g001.jpg

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