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首页> 外文期刊>Journal of applied microbiology >Degradation of benzyldimethylalkylammonium chloride by Aeromonas hydrophila sp. K.
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Degradation of benzyldimethylalkylammonium chloride by Aeromonas hydrophila sp. K.

机译:嗜水气单胞菌sp。降解氯化苄二甲基烷基铵。 K.

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摘要

Aims: The aim of this work was to study the biodegradation of benzyldimethylalkylammonium chloride (BAO) by Aeromonas hydrophila sp. K, an organism isolated from polluted soil and capable of utilizing BAC as sole source of carbon and energy. Methods and Results: High performance liquid chromatography and gas chromatography-mass spectrometry (GC-MS) analysis was used to study BAC degradation pathway. It was shown that during BAC biodegradation, formation of benzyldimethylamine, benzylmethylamine, benzylamine, benzaldehyde and benzoic acid occurred. Formation of benzyldimethylamine as the initial metabolite suggested that the cleavage of Calkyl-N bond occurred as the first step of BAC catabolism. Liberation of benzylmethylamine and benzylamine likely resulted from subsequent demethylation reactions, followed by deamination with formation of benzaldehyde. Benzaldehyde was rapidly converted into benzoic acid, which was further degraded. Conclusions: Aer. hydrophila sp. K is able to degrade BAC. A degradation pathway for BAC and related compounds is proposed. Significance and Impact of Study: These findings are significant for understanding biodegradation pathways of benzyl-containing quaternary ammonium compounds.
机译:目的:这项工作的目的是研究嗜水气单胞菌(Aeromonas hydrophila sp。)对氯化苄二甲基烷基铵(BAO)的生物降解作用。 K,一种从污染土壤中分离出来的生物,能够利用BAC作为唯一的碳和能源。方法与结果:采用高效液相色谱和气相色谱-质谱法(GC-MS)分析BAC的降解途径。结果表明,在BAC生物降解过程中,会生成苄基二甲基胺,苄基甲基胺,苄基胺,苯甲醛和苯甲酸。苄基二甲基胺作为初始代谢产物的形成表明C烷基-N键的裂解是BAC分解代谢的第一步。苄基甲基胺和苄基胺的释放可能是由于随后的脱甲基反应,然后脱氨基形成苯甲醛所致。苯甲醛迅速转化为苯甲酸,苯甲酸进一步降解。结论:Aer。亲水菌钾能够降解BAC。提出了BAC和相关化合物的降解途径。研究的意义和影响:这些发现对于理解含苄基季铵化合物的生物降解途径具有重要意义。

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