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Exploring the Efficacy of Bioaugmentation Strategy in Microbial Degradation of Chloroaniline

机译:探索生物强化策略在氯代苯胺微生物降解中的功效

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Pseudomonas spp. was isolated from activated-sludge and found to be able to mineralize 3-chloroaniline (3-CA). This strain was tested for its ability to clean wastewater containing 3-CA upon inoculation in activated-sludge. To monitor its survival, the strain was chromosomally marked with the gfp gene and designated Agfp. After inoculation into a lab-scale semi continuous activated-sludge (SCAS) system, the inoculated strain maintained itself in the sludge at least 45 days and was present in the sludge flocs. After an initial adaptation period of 6 days, complete degradation of 3-CA was obtained during two weeks, while no degradation at all occurred in the non-inoculated control reactors. Upon further operation of the SCAS system, only 50 % 3-CA removal was observed. Denaturing Gradient Gel Electrophoresis (DGGE) of 16S rRNA genes revealed a dynamic change in the microbial community structure of the activated-sludge. The DGGE patterns of the non inoculated and the inoculated reactors evolved after 7 days to different clusters, which suggests an effect of strain inoculation on the microbial community structure. The results indicate that bioaugmentation, even with a strain originating from that ecosystem and able to effectively grow on a selective substrate, is not permanent and will probably require regular resupplementation.
机译:假单胞菌从活性污泥中分离出氯仿,发现能够矿化3-氯苯胺(3-CA)。测试了该菌株在接种活性污泥后清洗含3-CA废水的能力。为了监测其存活,用gfp基因在染色体上标记了该菌株并命名为Agfp。接种到实验室规模的半连续活性污泥(SCAS)系统中后,接种的菌株在污泥中保持自身至少45天,并存在于污泥絮凝物中。在最初的适应期为6天后,两周内3-CA完全降解,而未接种的对照反应堆中完全没有降解。在SCAS系统进一步运行时,仅观察到50%的3-CA去除。 16S rRNA基因的变性梯度凝胶电泳(DGGE)揭示了活性污泥微生物群落结构的动态变化。未接种和已接种的反应器的DGGE模式在7天后演变为不同的簇,这表明菌株接种对微生物群落结构有影响。结果表明,即使是来自该生态系统且能够在选择性底物上有效生长的菌株,生物强化也不是永久的,可能需要定期补充。

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