Enrico M Cabutaje, Kota Seki, Motoichiro Kodama, Tsutomu Arie, Kotomi Ueno, Thomas Edison E Dela Cruz, Atsushi Ishihara
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引用次数: 0
摘要
利用生物测定引导的色谱分离方法从蘑菇Coprinus comatus中寻找抗真菌化合物,发现了一种新的聚酮,该聚酮含有罕见的3,3a,9,9 A -四氢- 1h -呋喃[3,4-b]铬-1- 1骨架。这种新化合物被命名为coprinolide。研究了红素内酯对5种重要的植物病原真菌的抑菌活性和抑菌潜力。Coprinolide对所有真菌的分生孢子萌发和芽管伸长均有抑制作用。对圆形炭疽病菌的萌发和芽管伸长的抑制效果最强,半最大抑制浓度分别为7.1 ppm和8.2 ppm。此外,利用荧光素和碘化丙啶在荧光显微镜下证实,coprinolide通过抑制分生孢子萌发和分生孢子死亡,显示出对所试真菌的杀真菌活性。这些发现表明,这种蘑菇作为一种新型生物活性化合物具有潜在的农业应用前景,可以作为一种抗不同植物病原真菌的药物。
Coprinolide, a novel antifungal tricyclic polyketide with a rare furanone-fused chromene skeleton isolated from the mushroom Coprinus comatus.
A search for antifungal compounds from the mushroom Coprinus comatus using a bioassay-guided chromatographic fractionation approach led to the discovery of a novel polyketide harboring a rare 3,3a,9,9a-tetrahydro-1H-furo[3,4-b]chromen-1-one skeleton. The novel compound was named coprinolide. The inhibitory activity and fungicidal potential of coprinolide were evaluated against five economically important plant-pathogenic fungi. Coprinolide showed inhibitory effects on conidial germination and germ tube elongation of all tested fungi. The strongest effect was observed for Colletotrichum orbiculare with half-maximal inhibitory concentrations of 7.1 ppm and 8.2 ppm for conidial germination and germ tube elongation, respectively. Furthermore, coprinolide exhibited fungicidal activity against the tested fungi by inhibiting conidial germination to conidial death as confirmed by fluorescence microscopy using fluorescein diacetate and propidium iodide. These findings showed the potential of the mushroom as a source of a novel bioactive compound with promising agricultural application as an antifungal agent against different plant-pathogenic fungi.
期刊介绍:
The Journal of Pesticide Science publishes the results of original research regarding the chemistry and biochemistry of pesticides including bio-based materials. It also covers their metabolism, toxicology, environmental fate and formulation.