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Biotransformation of Dimethenamid-P by the basidiomycete Irpex consors

机译:担孢菌属Irpex consors对Dimethenamid-P的生物转化

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Twenty-nine basidiomycetes were screened in surface and liquid cultures for their capability to biotransform the chloroacetamide herbicide Dimethenamid-P (DMTA-P). The basidiomycete Irpex consors converted 70% of the herbicide (0.5 g L-1 DMTA-P) in liquid cultures within 6 days, applying a minimal medium under non-ligninolytic conditions. Nine transformation products of DMTA-P were identified by liquid chromatography mass spectrometry analysis of the culture supernatants. The four main metabolites were isolated and subjected to GC-MS analysis and NMR spectroscopy. The analyses revealed that the thiophene ring was oxidized at three different positions. Metabolite M1 was identified as the S-oxide, which was isolable and relatively stable at room temperature. In metabolite M2, one methyl substituent of the thiophene ring was hydroxylated. The two metabolites M3A and M3B were diastereomers, but fully separated by HPLC. Here, oxidation of the aromatic CH carbon resulted in prototropic rearrangement to an alpha beta-unsaturated thiolactone. None of the three major metabolites of DMTA-P has been described before. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在表面和液体培养物中筛选了29个担子菌,以鉴定它们能够生物转化氯乙酰胺除草剂Dimethenamid-P(DMTA-P)。在非木质素分解条件下,使用基本培养基,在6天之内,液体培养基中的担子菌Irpex转化子可转化70%的除草剂(0.5 g L-1 DMTA-P)。通过培养上清液的液相色谱质谱分析鉴定了九种DMTA-P转化产物。分离出四种主要代谢物,并进行了GC-MS分析和NMR光谱分析。分析表明,噻吩环在三个不同的位置被氧化。代谢物M1被鉴定为S-氧化物,在室温下可分离且相对稳定。在代谢物M2中,噻吩环的一个甲基取代基被羟基化。两种代谢物M3A和M3B是非对映异构体,但通过HPLC完全分离。在此,芳族CH碳的氧化导致质子重排成α-β-不饱和硫代内酯。以前没有描述DMTA-P的三种主要代谢物。 (C)2016 Elsevier Ltd.保留所有权利。

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