Costa Jéssica, Sepúlveda Marcela, Gallardo Víctor, Cayún Yasna, Santander Christian, Ruíz Antonieta, Reyes Marjorie, Santos Carla, Cornejo Pablo, Lima Nelson, Santos Cledir
Departamento de Biologia, Instituto de Ciências Biológicas-ICB, Universidade Federal do Amazonas, Av. Rodrigo Otávio Jordão Ramos 3000, Bloco 01, Manaus 69077-000, AM, Brazil.
Department of Chemical Science and Natural Resources, Universidad de La Frontera, Temuco 4811-230, Chile.
Microorganisms. 2022 Nov 30;10(12):2387. doi: 10.3390/microorganisms10122387.
Opportunistic pathogenic fungi arise in agricultural crops as well as in surrounding human daily life. The recent increase in antifungal-resistant strains has created the need for new effective antifungals, particularly those based on plant secondary metabolites, such as capsaicinoids and capsinoids produced by species. The use of such natural compounds is well-aligned with the One Health approach, which tries to find an equilibrium among people, animals, and the environment. Considering this, the main objective of the present work is to review the antifungal potential of capsaicinoids and capsinoids, and to evaluate the environmental and health impacts of biofungicides based on these compounds. Overall, capsaicinoids and their analogues can be used to control pathogenic fungi growth in plant crops, as eco-friendly alternatives to pest management, and assist in the conservation and long-term storage of agrifood products. Their application in different stages of the agricultural and food production chains improves food safety, nutritional value, and overcomes antimicrobial resistance, with a lower associated risk to humans, animals, and the environment than that of synthetic fungicides and pesticides. Nevertheless, research on the effect of these compounds on bee-like beneficial insects and the development of new preservatives and packaging materials is still necessary.
机会性致病真菌出现在农作物以及人类周围的日常生活中。近年来抗真菌菌株的增加使得需要新的有效抗真菌剂,特别是基于植物次生代谢产物的抗真菌剂,例如某些物种产生的辣椒素类和类辣椒素。使用这类天然化合物与“同一健康”方法高度契合,该方法试图在人类、动物和环境之间找到平衡。考虑到这一点,本研究的主要目的是综述辣椒素类和类辣椒素的抗真菌潜力,并评估基于这些化合物的生物杀菌剂对环境和健康的影响。总体而言,辣椒素类及其类似物可用于控制植物作物中致病真菌的生长,作为害虫管理的环保替代品,并有助于农产品的保存和长期储存。它们在农业和食品生产链的不同阶段的应用提高了食品安全、营养价值,并克服了抗菌抗性,与合成杀菌剂和杀虫剂相比,对人类、动物和环境的相关风险更低。然而,仍有必要研究这些化合物对类似蜜蜂的有益昆虫的影响以及开发新的防腐剂和包装材料。