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《 Alpha-Mangostin 对体内外真菌感染的抗真菌活性》

Antifungal Activity of Alpha-Mangostin against In Vitro and In Vivo.

机构信息

Environment and Plant Protection Institute, Chinese Academy of Tropical Agricultural Science (CATAS), Haikou 571101, China.

Key Laboratory of Monitoring and Control of Tropical Agricultural and Forest Invasive Alien Pests, Ministry of Agriculture, Haikou 571101, China.

出版信息

Molecules. 2020 Nov 16;25(22):5335. doi: 10.3390/molecules25225335.

Abstract

We investigated alpha-mangostin (α-mangostin, α-MG), a xanthone natural product extracted from the pericarp of mangosteen (), for its antifungal activities and possible mechanism against which causes mango anthracnose. The results demonstrated that α-MG had a relatively high in vitro inhibitory activity against among 20 plant pathogenic fungi. The median effective concentration (EC) values of α-MG against mycelial growth were nearly 10 times higher than those of spore germination inhibition for both strains of , the carbendazim-sensitive () and carbendazim-resistant (). The results suggested that α-MG exhibited a better inhibitory effect on spore germination than on the mycelial growth of . Further investigation indicated that the protective effect could be superior to the therapeutic effect for mango leaves for scab development. The morphological observations of mycelium showed that α-MG caused the accumulation of dense bodies. Ultrastructural observation further revealed that α-MG caused a decrease in the quantity and shape of the swelling of mitochondria in the mycelium cells of . In addition, bioassays disclosed that the inhibitory activity of α-MG on spore germination was reduced by adding exogenous adenosine triphosphate (ATP). These results suggested that the mode of action of α-MG could be involved in the destruction of mitochondrial energy metabolism. The current study supports α-MG as a natural antifungal agent in crop protection.

摘要

我们研究了从山竹果()果皮中提取的黄烷酮天然产物 α-倒捻子素(α-MG)对芒果炭疽病菌()的抗真菌活性及其可能的作用机制。结果表明,α-MG 对 20 种植物病原真菌具有较高的体外抑制活性。α-MG 对两种菌株(对多菌灵敏感()和多菌灵抗性())的菌丝生长的中效浓度(EC)值比孢子萌发抑制的中效浓度值(EC)值低近 10 倍。结果表明,α-MG 对孢子萌发的抑制作用优于对的菌丝生长的抑制作用。进一步的研究表明,α-MG 对芒果叶片炭疽病的保护效果优于治疗效果。对菌丝体的形态观察表明,α-MG 导致致密体的积累。超微结构观察进一步表明,α-MG 导致菌丝体细胞中线粒体肿胀的数量和形状减少。此外,生物测定表明,添加外源三磷酸腺苷(ATP)可降低 α-MG 对孢子萌发的抑制活性。这些结果表明,α-MG 的作用方式可能涉及线粒体能量代谢的破坏。本研究支持 α-MG 作为一种天然的作物保护抗真菌剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbd6/7696833/f6791bc2de96/molecules-25-05335-g001.jpg

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