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Biotransformation of Host Plant Flavonoids by the Fungal Endophyte Epicoccum nigrum

机译:真菌内生菌Epicoccum nigrum对宿主植物类黄酮的生物转化

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Fermentation of the fungus Epicoccum nigrum isolated from leaves of Salix sp. on green lentil solid medium yielded the flavonol kaempferol (3) as well as two kaempferol O-diglyco- sides (1 and 2) including the new compound 1. The fungal flavonoids bear strong structural similarities to kaempferol derivatives such as kaempferol O-glycoside (4) being present in green lentils. Furthermore, feeding experiments were con- ducted by adding flavonoids (kaempferol and rutin) as precursors to solid rice media followed by HPLC and LC-MS analyses. Fermentation of the fungus on flavonoid free solid rice medium afforded flavonoid free extracts indicating that the fungal flavonoids originate through hydrolytic cleavage of kaempferol glycosides such as 4 followed by glycosylation and acetylation. This study suggests that E. nigrum is capable of biotransformation reactions of plant derived flavonoids where- as de novo biosynthesis of flavonoids is less likely.
机译:从salix sp的叶子中分离出的真菌斑岩的发酵。 在绿色小扁豆上,固体培养基产生了黄酮醇kaempferol(3)以及两个Kaempferol o-diglyco-侧(1和2),包括新化合物1.真菌类黄酮与Kaempferol衍生物(如Kaempferol O-Glycoside)具有很强的结构相似性( 4)存在于绿色小扁豆中。 此外,通过添加类黄酮(Kaempferol和rutin)作为固体培养基的前体,随后是HPLC和LC-MS分析,将进食实验添加为前体。 真菌在不含类黄酮的固体培养基上的发酵提供了不含类黄酮的提取物,表明真菌类黄酮源于kaempferol糖苷的水解裂解,例如4,然后是糖基化和乙酰化。 这项研究表明,大肠杆菌能够对植物衍生的类黄酮的生物转化反应,其中 - 类黄酮的从头生物合成的可能性较小。

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