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Isolation of Oxamyl-degrading Bacteria and Identification of cehA as a Novel Oxamyl Hydrolase Gene

机译:降解乙酰胺基细菌的分离和鉴定作为新的乙酰胺基水解酶基因的cehA

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摘要

Microbial degradation is the main process controlling the environmental dissipation of the nematicide oxamyl. Despite that, little is known regarding the microorganisms involved in its biotransformation. We report the isolation of four oxamyl-degrading bacterial strains from an agricultural soil exhibiting enhanced biodegradation of oxamyl. Multilocus sequence analysis (MLSA) assigned the isolated bacteria to different subgroups of the genus Pseudomonas. The isolated bacteria hydrolyzed oxamyl to oxamyl oxime, which was not further transformed, and utilized methylamine as a C and N source. This was further supported by the detection of methylamine dehydrogenase in three of the four isolates. All oxamyl-degrading strains carried a gene highly homologous to a carbamate-hydrolase gene cehA previously identified in carbaryl- and carbofuran-degrading strains. Transcription analysis verified its direct involvement in the hydrolysis of oxamyl. Selected isolates exhibited relaxed degrading specificity and transformed all carbamates tested including the oximino carbamates aldicarb and methomyl (structurally related to oxamyl) and the aryl-methyl carbamates carbofuran and carbaryl which share with oxamyl only the carbamate moiety.
机译:微生物降解是控制杀线虫剂乙酰胺的环境耗散的主要过程。尽管如此,对于涉及其生物转化的微生物知之甚少。我们报告从表现出的草酰胺增强的生物降解的农业土壤中分离出四个草酰胺降解的细菌菌株。多基因座序列分析(MLSA)将分离的细菌分配给假单胞菌属的不同亚组。分离的细菌将草酰胺水解为草酰胺肟,将其进一步转化,并利用甲胺作为C和N源。在四个分离物中的三个分离物中检测到甲胺脱氢酶进一步证明了这一点。所有降解草酰胺的菌株均携带与先前在降解甲芳基和呋喃呋喃的菌株中鉴定出的氨基甲酸酯水解酶基因cehA高度同源的基因。转录分析证实其直接参与草酰戊的水解。选定的分离物表现出轻松的降解特异性,并转化了所有测试的氨基甲酸酯,包括肟基氨基甲酸酯涕灭威和灭多威(在结构上与乙酰胺有关)以及芳基-甲基氨基甲酸酯呋喃丹和西维因,仅与氨基甲酸酯共享氨基甲酸酯部分。

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