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Biodegradation of Acetochlor and 2-methyl-6-ethylaniline by Bacillus subtilis and Pseudomonasfluorescens

机译:枯草芽孢杆菌和假单胞菌氟葡萄球菌的乙酰乙酰氯和2-甲基-6-乙基苯胺的生物降解

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摘要

Two bacterial strains, Pseudomonas fluorescens KT3 and Bacillus subtilis 2M6E, isolated from soil utilized acetochlor and 2-methyl-6-ethylaniline (2M6E) as carbon and nitrogen sources, respectively. The strain mixture utilized more than 95% acetochlor within 30 h and nearly 100% 2M6E within 24 h from each initial concentration of 100 mg/L. Although B. subtilis 2M6E could not degrade acetochlor, the strain augmented the degradation rate mediated by P. fluorescens KT3. In its degradation process, KT3 converted acetochlor to 2M6E as an intermediate product. Moreover, Bacillus subtilis 2M6E transformed 2M6E into catechol. The enzyme activities involved in the degradation pathways indicated that both strains transformed the chemicals via an ortho-cleavage pathway. The formation of dual-species biofilms and their participation in biodegradation were also investigated. The obtained results showed that the combination of these strains augmented their biofilm-forming capabilities and enhanced the degradation rates of both acetochlor and 2M6E. This study exemplifies the efficient use of mixed cultures of both suspended and biofilm cells in degrading acetochlor and 2M6E.
机译:两种细菌菌株,假单胞菌荧光素KT3和枯草芽孢杆菌2M6E,与土壤中分离使用乙酰氯和2-甲基-6-乙基苯胺(2ME6E)作为碳和氮源。应变混合物在30小时内使用超过95%的乙酰物,在24小时内,从每个初始浓度为100mg / L.虽然B.枯草芽孢杆菌2M6E不能降解乙酰氯,但应变增强了P.荧光型KT3介导的降解速率。在其降解过程中,KT3转化为2MED作为中间产品。此外,枯草芽孢杆菌2M6E将2M6E转化为儿茶酚。参与降解途径的酶活性表明,两种菌株通过矫正途径转化了化学品。还研究了双种生物膜的形成及其参与生物降解。所得结果表明,这些菌株的组合增强了它们的生物膜形成能力,并增强了丙酮和2mE2的降解速率。该研究举例说明了悬浮和生物膜细胞的混合培养物在降解的乙酰化合物中的有效使用。

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