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Induced biosyntheses of a novel butyrophenone and two aromatic polyketides in the plant pathogen Stagonospora nodorum

机译:诱导植物病原体Noagonum中新的丁苯酮和两种芳香族聚酮化合物的生物合成

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Fungal aromatic compounds comprise an important and structurally diverse group of secondary metabolites. Several genome sequencing projects revealed many putative biosynthetic gene clusters of fungal aromatic compounds, but many of these genes seem to be silent under typical laboratory culture conditions. To gain access to this untapped reservoir of natural products, we utilized chemical epigenetic modifiers to induce the expression of dormant biosynthetic genes. As a result, the concomitant supplementation of the histone deacetylase inhibitors suberoylanilide hydroxamic acid (500 μM) and nicotinamide (50 μM) to the culture medium of a fungal pathogen, Stagonospora nodorum, resulted in the isolation of three aromatic compounds (1–3), including a novel natural butyrophenone, (+)-4′-methoxy-(2S)-methylbutyrophenone (1), and two known polyketides, alternariol (2) and (?)-(3R)-mellein methyl ether (3).
机译:真菌芳香族化合物包含重要且结构多样的次级代谢物。几个基因组测序项目揭示了真菌芳香化合物的许多假定的生物合成基因簇,但是在典型的实验室培养条件下,这些基因中的许多似乎是沉默的。为了获得未开发的天然产物库,我们利用化学表观遗传修饰剂诱导了休眠的生物合成基因的表达。结果,在真菌病原体No. Stagonospora nodorum的培养基中同时补充组蛋白脱乙酰基酶抑制剂亚氨基磺酰苯胺异羟肟酸(500μM)和烟酰胺(50μM),导致分离出三种芳香族化合物(1-3) ,包括新型的天然丁苯酮,(+)-4'-甲氧基-(2S)-甲基丁苯酮(1)和两种已知的聚酮化合物,交替烯醇(2)和(α)-(3R)-蜜勒烯甲基醚(3)。

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