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Isolation and characterization of efficient isoxaben-transforming Microbacterium sp strains from four European soils

机译:从四种欧洲土壤中高效转化异恶草酮的微细菌sp菌株的分离和鉴定

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Nutrient-agar plates containing isoxaben (500 mg litre(-1)) were used to isolate isoxaben-metabolising bacteria from four European soils incubated with the herbicide under laboratory conditions. In flask experiments, inoculation of a basal salts medium containing nitrogen and [phenyl-U-C-14]isoxaben with an isolate (B2b) resulted in 33% recovery of the initial radioactivity as [C-14]carbon dioxide after 2 weeks. A major metabolite identified by GC-MS and NMR analysis as 3-(1-ethyl-1-methylpropyl)isoxazol-5-ylamine accumulated both in basal salts and nutrient broth media. 2,6-Dimethoxybenzoic acid, a suspected metabolite of isoxaben, was not detected in either liquid media. However, the capability of the B2b isolate to use 2,6-dimethoxybenzoic acid as a source of carbon was demonstrated. Soil inoculation with the B2b strain resulted in an increase in the recovery of [C-14]carbon dioxide from both [phenyl-U-C-14] and [isoxazole-(5)-C-14]isoxaben. The metabolite identified as 3-(1-ethyl-1-methylpropyl)isoxazole-5-ylamine only accumulated if the soil was autoclaved before inoculation. This metabolite was rapidly mineralized by the microflora of a natural soil without history of isoxaben treatment. Homology patterns of sequenced 16S rDNA between isoxaben-transforming isolates and reference strains showed that the four isolates identified belonged to the genus Microbacterium.
机译:在实验室条件下,用含有除草剂(500 mg升(-1))的营养琼脂板从四种欧洲除草剂土壤中分离出与异沙宾代谢的细菌。在烧瓶实验中,用分离物(B2b)接种含氮和[苯基-U-C-14]异沙宾的基础盐培养基,可在2周后以[C-14]二氧化碳的形式恢复33%的初始放射性。通过GC-MS和NMR分析确定的主要代谢产物为3-(1-乙基-1-甲基丙基)异恶唑-5-基胺在基础盐和营养肉汤培养基中均积累。在任何一种液体介质中均未检测到2,6-二甲氧基苯甲酸(一种可能的异恶草代谢产物)。然而,证明了B2b分离物使用2,6-二甲氧基苯甲酸作为碳源的能力。 B2b菌株对土壤的接种导致从[苯基-U-C-14]和[异恶唑-(5)-C-14]异丁苯中[C-14]二氧化碳的回收率增加。仅当土壤在接种前经过高压灭菌后,才能确定积累为3-(1-乙基-1-甲基丙基)异恶唑-5-基胺的代谢物。这种代谢物被天然土壤的微生物群落迅速矿化,没有异黄酮处理的历史。异恶英转化菌株与参考菌株之间的16S rDNA序列同源性分析表明,鉴定出的四个菌株属于微细菌属。

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