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从内生真菌 Hypoxylon anthochroum 菌株 Gseg1 中分离得到的异苯并呋喃酮的抗真菌和抗粘菌活性及作用方式。

Antifungal and antioomycete activities and modes of action of isobenzofuranones isolated from the endophytic fungus Hypoxylon anthochroum strain Gseg1.

机构信息

Departamento de Productos Naturales, Instituto de Química, Universidad Nacional Autónoma de México (UNAM), Ciudad Universitaria, Delegación Coyoacán, Ciudad de Mexico 04510, Mexico.

Departamento de Química Inorgánica, Instituto de Química, Universidad Nacional Autónoma de México (UNAM), Ciudad Universitaria, Delegación Coyoacán, Ciudad de Mexico 04510, Mexico.

出版信息

Pestic Biochem Physiol. 2020 Oct;169:104670. doi: 10.1016/j.pestbp.2020.104670. Epub 2020 Jul 26.

Abstract

Hypoxylon species are distributed worldwide and have been isolated from different habitats. The endophyte Hypoxylon anthochroum strain Gseg1 was isolated from healthy leaves of Gliricidia sepium. A chemical study of the culture medium and mycelium organic extracts of the endophytic fungus H. anthochroum Gseg1 led to the isolation of three known isobenzofuranones, 7-hydroxy-4,6-dimethyl-3H-isobenzofuran-1-one, 1, 7-methoxy-4,6-dimethyl-3H-isobenzofuran-1-one, 2, 6-formyl-4-methyl-7-methoxy-3H-isobenzofuran-1-one, 3, and one compound was isolated for the first time as a natural product, 7-methoxy-4-methyl-3H-isobenzofuran-1-one, 4. In addition, the chemical synthesis of 1 and 2, and a derivative, 7-methoxy-6-methyl-3H-isobenzofuran-1-one, 5, was performed. The isobenzofuranones showed antifungal and antioomycete activities. Compounds 1-5 inhibited the growth of Fusarium oxysporum, Alternaria alternata, Pythium aphanidermatum, and Phytophthora capsici, in addition, 1, 2 and 5 interrupted the respiration and caused electrolyte leakage due to cell membrane damage. Compound 2 was the most active, inhibiting the growth of the four microorganisms, affecting the respiration and increasing the relative conductivity due to electrolyte leakage. Compounds 1-4 also induce morphological changes in the plant pathogens' mycelia and hyphae. These compounds could be useful for the control of plant pathogenic fungi and oomycetes of agricultural relevance.

摘要

Hypoxylon 物种分布于世界各地,并从不同的栖息地中分离出来。内生真菌 Hypoxylon anthochroum 菌株 Gseg1 是从健康的 Gliricidia sepium 叶片中分离出来的。对内生真菌 H. anthochroum Gseg1 的培养基和菌丝体有机提取物进行了化学研究,导致分离出三种已知的异苯并呋喃酮,分别为 7-羟基-4,6-二甲基-3H-异苯并呋喃-1-酮、1,7-甲氧基-4,6-二甲基-3H-异苯并呋喃-1-酮、2,6-甲酰基-4-甲基-7-甲氧基-3H-异苯并呋喃-1-酮,3,并且一种化合物作为天然产物首次被分离出来,为 7-甲氧基-4-甲基-3H-异苯并呋喃-1-酮,4。此外,还进行了 1 和 2 的化学合成以及一种衍生物,7-甲氧基-6-甲基-3H-异苯并呋喃-1-酮,5。这些异苯并呋喃酮表现出抗真菌和抗卵菌活性。化合物 1-5 抑制了 Fusarium oxysporum、Alternaria alternata、Pythium aphanidermatum 和 Phytophthora capsici 的生长,此外,1、2 和 5 中断了呼吸并导致细胞膜损伤导致电解质泄漏。化合物 2 最为活跃,抑制了四种微生物的生长,影响呼吸并因电解质泄漏而增加相对电导率。化合物 2 还诱导了植物病原菌菌丝体和菌丝的形态变化。这些化合物可能对控制农业相关的植物病原真菌和卵菌有用。

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