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首页> 外文期刊>African Journal of Microbiology Research >Effect of biological treatment and ultraviolet (UV)-C radiation disinfection process on wastewater bacterial community as assessed by denaturing gradient gel electrophoresis (DGGE) fingerprints
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Effect of biological treatment and ultraviolet (UV)-C radiation disinfection process on wastewater bacterial community as assessed by denaturing gradient gel electrophoresis (DGGE) fingerprints

机译:变性梯度凝胶电泳(DGGE)指纹图评估生物处理和紫外线(C)辐射消毒工艺对废水细菌群落的影响

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The rotating biological contactor (RBC) process was frequently?used for the biological wastewater treatment in order to remove pollutants and to improve the water qualitybefore discharge to the environment.?The presence of bacteria species in the secondary treated wastewater indicates the necessity of a tertiary treatment process [ultraviolet (UV)-C radiation?disinfection] to reduce the number of living organisms in the water.?Denaturing gradient gel electrophoresis (DGGE) method using 16S rDNA was commonly used for a direct comparison of structural diversity among different microbial communities. In the present study,?community in treated and untreated wastewater from RBC treatment?plantwas investigated?using DGGE?coupled with sequence analysis of 16S rRNA gene fragments from bands of interest. The analysis of the DGGE profiles and the sequence of the dominant DGGE bands showed a variability of the bacterial community with season. DGGE patterns of samples collected in summer were more complex than those collected in winter. In addition,?the investigation of the effect of increasing UV253.7?germicidal doses on the bacterial community, in secondary treated wastewater effluent, revealed variabilityin?bacterial tolerance?to UV253.7?radiation.?This variability is?inter-specific?and is?dependent on the?UV-C?dose?used and the bacterial specie irradiated.?Consequently, this study demonstrated that DGGE method?coupled with sequencing provides precise information on RBC and UV-C wastewater treatment process.
机译:旋转生物接触器(RBC)工艺通常用于处理生物废水,以去除污染物并改善排放到环境中之前的水质。二级处理废水中细菌的存在表明需要第三级处理过程[紫外线(C)-紫外线消毒],以减少水中的活生物体数量。使用16S rDNA的变性梯度凝胶电泳(DGGE)方法通常用于直接比较不同微生物群落之间的结构多样性。在本研究中,使用DGGE技术结合来自目标条带的16S rRNA基因片段的序列分析,研究了来自RBC处理厂的已处理和未处理废水中的群落。 DGGE图谱和主要DGGE条带的序列分析显示细菌群落随季节变化。夏季采集的样品的DGGE模式比冬季采集的更为复杂。此外,对增加紫外线253.7杀菌剂量对细菌群落的影响进行的研究表明,在经过二次处理的废水中,细菌对紫外线253.7辐射的耐受性存在差异。因此,本研究表明,DGGE方法与测序结合可提供有关RBC和UV-C废水处理过程的精确信息。

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