首页> 外文期刊>Journal of natural products >Maximizing chemical diversity of fungal metabolites: biogenetically related Heptaketides of the endolichenic fungus Corynespora sp. (1).
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Maximizing chemical diversity of fungal metabolites: biogenetically related Heptaketides of the endolichenic fungus Corynespora sp. (1).

机译:最大限度地提高真菌代谢物的化学多样性:内生真菌内生真菌Corynespora sp。的生物遗传相关Heptaketides。 (1)。

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摘要

In an attempt to explore the biosynthetic potential of the endolichenic fungus Corynespora sp. BA-10763, its metabolite profiles under several culture conditions were investigated. When cultured in potato dextrose agar, it produced three new heptaketides, 9-O-methylscytalol A (1), 7-desmethylherbarin (2), and 8-hydroxyherbarin (3), together with biogenetically related metabolites scytalol A (4), 8-O-methylfusarubin (5), scorpinone (6), and 8-O-methylbostrycoidin (7), which are new to this organism, and herbarin (8), a metabolite previously encountered in this fungal strain. The use of malt extract agar as the culture medium led to the isolation of 6, 8, 1-hydroxydehydroherbarin (9), and 1-methoxydehydroherbarin (10), which was found to be an artifact formed during the extraction of the culture medium with methanol. The structures of all new compounds were determined by interpretation of their spectroscopic data and chemical interconversions.
机译:为了探索内胚层真菌Corynespora sp。的生物合成潜力。研究了BA-10763在几种培养条件下的代谢产物。当在马铃薯葡萄糖琼脂中培养时,它会产生三种新的七肽,即9-O-甲基鞘氨醇A(1),7-去甲基herbarin(2)和8-hydroxyherbarin(3),以及与生物遗传相关的代谢产物scytalol A(4),8 -O-甲基富沙红素(5),蝎子酮(6)和8-O-甲基Bostrycoidin(7)对这种生物是新的,而Herbarin(8)是该真菌菌株中先前遇到的一种代谢产物。使用麦芽提取物琼脂作为培养基导致分离出6、8、1-羟基脱氢水杨素(9)和1-甲氧基脱氢水杨素(10),发现这是在用甲醇。所有新化合物的结构均通过解释其光谱数据和化学互转换来确定。

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