利用冷等离子体:管理植物采后真菌感染的创新策略

C. Shanmugaraj, V. Jaiganesh, H.M. Akshay Kumar, M.K. Biswas
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引用次数: 0

摘要

近来,植物病理学研究人员在寻找大规模防治收获后真菌感染的无化学药剂方法时遇到了障碍。虽然已经使用了热处理等传统方法,但这些方法往往存在改变食品质量或对环境造成危害等缺点。冷等离子体是一种令人鼓舞的替代方法,它由气体衍生原子、激发分子和带电粒子混合组成。与其他处理方法不同,冷等离子体对新鲜农产品或环境没有不良影响。本综述深入探讨了冷等离子体技术在处理收获后真菌疾病方面的潜力,深入探讨了等离子体生成系统,并对体内和体外研究进行了审查。通过评估冷等离子体技术的优势、制约因素和当前的研究空白,本综述旨在为冷等离子体技术在商业环境中的应用提供指导。
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Harnessing Cold Plasma: An Innovative Strategy for Managing Postharvest Fungal Infections in Plants
Researchers in plant pathology in recent times; have faced obstacles in finding chemical-free methods to combat postharvest fungal infections on a large scale. While conventional approaches like heat treatments have been utilized, they often present drawbacks such as altering food quality or causing harm to the environment. An encouraging alternative is a cold plasma, which consists of a blend of gas-derived atoms, excited molecules, and charged particles. Unlike alternative treatments, cold plasma has demonstrated no adverse effects on fresh produce or the environment. This review delves into the potential of cold plasma technology in managing postharvest fungal diseases, offering insights into plasma generation systems and examining both in vivo and in vitro studies. By evaluating the benefits, constraints, and current research gaps, this review seeks to guide for implementation of cold plasma technology in commercial settings.
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