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Degradation of 17a-ethinylestradiol by Enterobacter tabaci Isolate and Kinetic Characterization

机译:烟曲肠杆菌对17a-炔雌醇的降解及动力学表征

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In the present study, the degradability of 17α-ethinylestradiol (EE2) by isolated bacterial strains from the activated sludge of the wastewater treatment plant of a factory manufacturing contraceptive pills was investigated. The strain with more degradation capacity of EE2 (strain SI) was identified as Enterobacter tabaci based on its morphology and analysis of the 16S rRNA sequence. The isolated strains were used in the form of pure (containing the identified bacterial strain) and mixed (containing the two isolated bacterial strains) cultures for degradation of EE2 as the sole carbon and energy source. The added substrate (0-4 mg L~(-1)) was metabolized almost completely within 4 d at 30 ℃. EE2 was used as the growth substrate by the bacterial cultures, since the biomass concentration was obviously increased. EE2 biodeg-radation was kinetically investigated according to the kinetic data obtained by fitted appropriate models (the Monod model and the allosteric sigmoidal model were used for the pure and the mixed bacterial cultures, respectively). The first-order kinetic rate constant ((q_m)/(K_s)) for EE2 utilization by the pure culture was noticeably higher than the value obtained by the mixed culture, probably due to preference of the isolated bacterial strain to estrogenic compounds as the growth substrate by producing specific enzymes. By comparing the degradation and also the growth kinetic parameters, it was concluded that the pure bacterial culture had better efficiency in degradation of EE2.
机译:在本研究中,研究了避孕药厂废水处理厂的活性污泥中分离的细菌菌株对17α-乙炔雌二醇(EE2)的降解性。根据其形态和对16S rRNA序列的分析,将具有更大EE2降解能力的菌株(SI菌株)鉴定为烟粉杆菌。分离的菌株以纯培养物(包含已鉴定的细菌菌株)和混合培养物(包含两个分离的细菌菌株)的形式使用,以降解作为唯一碳源和能源的EE2。添加的底物(0-4 mg L〜(-1))在30℃4 d内几乎完全代谢。由于生物量浓度明显增加,因此细菌培养使用EE2作为生长底物。根据拟合的合适模型获得的动力学数据,对EE2的生物降解进行动力学研究(将Monod模型和变构乙状结肠模型分别用于纯细菌培养和混合细菌培养)。纯培养物利用EE2的一级动力学速率常数((q_m)/(K_s))明显高于混合培养物获得的值,这可能是由于分离的细菌菌株随着生长而偏爱雌激素化合物底物通过产生特定的酶。通过比较降解和生长动力学参数,可以得出结论,纯细菌培养物具有更好的EE2降解效率。

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