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Characterization of Microbial Signatures From Advanced Treated Wastewater Biofilms

机译:先进处理过的废水生物膜中微生物特征的表征

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Next-generation sequencing (NGS) and metagenomics were used to identify microbial communities in biofilms of microfiltration (MF) and reverse osmosis (RO) membranes in an advanced water purification facility (AWPF) that treats municipal wastewater to produce potable quality water. Secondary treated wastewater effluent is the source of influent to the AWPF treatment train and was also characterized by NGS. Results show low bacterial diversity in biofilms obtained from the feed-side surfaces of MF and RO membranes. Microbial communities and antibiotic resistance genes (ARGs) in the RO biofilm were compared with those of the MF and influent, revealing lower abundance of bacterial species and ARGs in the RO biofilm than in the other samples. Opportunistic pathogens were detected in all samples; however, indicator bacteria, viruses, and bacteriophages were not detected in the RO biofilm. It is concluded that NGS has great potential for improved detection and characterization of microbial communities in biofilms that form on AWPF MF and RO membranes.
机译:下一代测序(NGS)和宏基因组学被用于在先进的净水设施(AWPF)中识别微滤(MF)和反渗透(RO)膜的生物膜中的微生物群落,该设施可以处理市政废水以生产饮用水。经过二级处理的废水是AWPF处理流程的进水源,其特征还在于NGS。结果表明,从MF和RO膜的进料侧表面获得的生物膜中细菌的多样性较低。将RO生物膜中的微生物群落和抗生素抗性基因(ARGs)与MF和进水的微生物群落和抗生素抗性基因进行了比较,发现RO生物膜中细菌种类和ARGs的丰度低于其他样品。在所有样品中均检测到了机会病原体。然而,在RO生物膜中未检测到指示性细菌,病毒和噬菌体。结论是,NGS在改进AWPF MF和RO膜上形成的生物膜中微生物群落的检测和表征方面具有巨大潜力。

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