首页> 美国卫生研究院文献>Microorganisms >Bioactivities of Ketones Terpenes: Antifungal Effect on F. verticillioides and Repellents to Control Insect Fungal Vector S. zeamais
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Bioactivities of Ketones Terpenes: Antifungal Effect on F. verticillioides and Repellents to Control Insect Fungal Vector S. zeamais

机译:酮萜类化合物的生物活性:对细小镰刀菌和驱虫剂的抗真菌作用以控制昆虫真菌载体(S. zeamais)

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摘要

Maize is one the most important staple foods in the world. However, numerous pests, such as fungal pathogens, e.g., Fusarium verticillioides, and insects, such as Sitophlilus zeamais, attack maize grains during storage. Many F. verticillioides strains produce fumonisins, one of the most important mycotoxin that causes toxic effects on human and animal health. This situation is aggravated by the insect fungal vector, Sitophlilus zeamais, which contributes to the dispersal of fungal spores, and through feeding damage, provide entry points for fungal infections. The aim of this study was to evaluate in vitro bioassays, the antifungal activity on F. verticillioides M3125 and repellent effects against S. zeamais of ketone terpenes. In addition, we performed Quantitative structure–activity relationship (Q-SAR) studies between physico-chemical properties of ketone terpenes and the antifungal effect. Thymoquinone was the most active compound against F. verticillioides (Minimum Inhibitory Concentration, MIC: 0.87) affecting the lag phase and the growth rate showing a total inhibition of growth at concentration higher than 2 mM (p < 0.05). The Q-SAR model revealed that the antifungal activity of ketone compounds is related to the electronic descriptor, Pi energy. Thymoquinone showed a strong repellent effect (−77.8 ± 8.5, p < 0.001) against S. zeamais. These findings make an important contribution to the search for new compounds to control two stored pests of maize.
机译:玉米是世界上最重要的主食之一。但是,在储存过程中,许多病虫害,例如真菌病原体,例如镰孢镰刀菌(Fusarium v​​erticillioides),和昆虫,例如玉米Si虫(Sitophlilus zeamais),都侵害了玉米的籽粒。许多褐葡萄球菌菌株产生伏马毒素,伏马毒素是引起人类和动物健康毒性的最重要的霉菌毒素之一。昆虫真菌媒介Sitophlilus zeamais加剧了这种情况,该媒介有助于真菌孢子的散布,并通过进食破坏为真菌感染提供了切入点。这项研究的目的是评估体外生物测定,对褐葡萄球菌M3125的抗真菌活性以及对酮萜类的玉米防霉菌的驱避作用。另外,我们进行了酮萜烯的理化性质与抗真菌作用之间的定量构效关系(Q-SAR)研究。胸腺醌是最有效的抗褐藻假单胞菌的化合物(最小抑制浓度,MIC:0.87),影响迟滞期和生长速率,在浓度高于2 mM时显示出总的生长抑制作用(p <0.05)。 Q-SAR模型表明,酮类化合物的抗真菌活性与电子描述符Pi能量有关。胸腺醌对玉米芽孢杆菌显示出强烈的驱避作用(−77.8±8.5,p <0.001)。这些发现为寻找新的化合物来控制两种储存的玉米害虫做出了重要贡献。

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