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Degradation of aniline by newly isolated, extremely aniline-tolerant Delftia sp AN3

机译:新分离的极耐苯胺的Delftia sp AN3降解苯胺

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A bacterial strain, AN3, which was able to use aniline or acetanilide as sole carbon, nitrogen and energy sources was isolated from activated sludge and identified as Delftia sp. AN3. This strain was capable of growing on concentrations of aniline up to 53.8 mM (5000 mg/l). Substituted anilines such as N-methylaniline, N,N-dimethylaniline, 2-methylaniline, 4-methylaniline, 2-chloroaniline, 3-chloroaniline, o-aminoaniline, m-aminoaniline. p-aminoaniline, and sulfanilic acid did not support the growth of strain AN3. The optimal temperature and pH for growth and degradation of aniline were 30 degreesC and 7.0, respectively. The activities of aniline dioxygenase, catechol 2,3-dioxygenase and other enzymes involved in aniline degradation were determined, and results indicated that all of them were inducible. The K-m and V-max of aniline dioxygenase were 0.29 mM and 0.043 mmol/mg protein/min, respectively. The K-m and V-max of catechol 2, 3-dioxygenase for catechol were 0.016 mM and 0.015 mmol/mg protein/min, respectively. Based on the results obtained, a pathway for the degradation of aniline by Delftia sp. AN3 was proposed. The importance of the strain to the operation of municipal wastewater treatment plants is discussed. [References: 25]
机译:从活性污泥中分离出能够使用苯胺或乙酰苯胺作为唯一碳,氮和能源的细菌菌株AN3,并将其鉴定为Delftia sp。 AN3。该菌株能够在高达53.8 mM(5000 mg / l)的苯胺浓度下生长。取代的苯胺,例如N-甲基苯胺,N,N-二甲基苯胺,2-甲基苯胺,4-甲基苯胺,2-氯苯胺,3-氯苯胺,邻氨基苯胺,间氨基苯胺。对氨基苯胺和磺胺酸不支持菌株AN3的生长。苯胺生长和降解的最佳温度和pH分别为30℃和7.0。确定了苯胺双加氧酶,儿茶酚2,3-双加氧酶和其他参与苯胺降解的酶的活性,结果表明它们都是可诱导的。苯胺双加氧酶的K-m和V-max分别为0.29 mM和0.043 mmol / mg蛋白/ min。儿茶酚2、3-二加氧酶的K-m和V-max分别为0.016 mM和0.015 mmol / mg蛋白/ min。基于获得的结果,德尔福特菌(Delftia sp。)降解苯胺的途径。提出了AN3。讨论了菌株对市政废水处理厂运行的重要性。 [参考:25]

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