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Isolation and Transcriptome Analysis of Phenol-Degrading Bacterium From Carbon–Sand Filters in a Full-Scale Drinking Water Treatment Plant

机译:大型饮用水处理厂碳砂滤池中苯酚降解细菌的分离和转录组分析

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摘要

Phenol is a typical organic contaminant in the environment. To date, the biodegradation of phenol by microorganisms remains the preferred method for its removal and remediation, but data on phenol removal by drinking water biofilters are lacking. In this study, we used high-throughput sequencing to investigate the microbial community structure in a carbon–sand biofilter. The results indicated that the predominant bacterial group was Bacilli, followed by Gammaproteobacteria, Clostridia, and Alphaproteobacteria. In addition, a strain was capable of degrading phenol at low concentrations of 500 μg/L within 100 min was isolated and identified as Rhodococcus sp. CS-1. Transcriptome analysis results showed that Rhodococcus sp. CS-1 was able to degrade phenol via both the catechol and protocatechuate branch of the β-ketoadipate pathway. Furthermore, some novel candidate biomarkers (copper oxidase, copper chaperone, and MarR/DeoR/TetR family transcriptional regulators) were successfully identified to be potentially involved in phenol biodegradation. This study indicates that carbon–sand filters have the potential for remediation of phenol. The application of native microorganisms to drinking water treatment system is an adaptive strategy in oligotrophic water environments.
机译:苯酚是环境中的典型有机污染物。迄今为止,微生物对苯酚的生物降解仍然是去除和修复苯酚的首选方法,但是缺乏关于通过饮用水生物滤池去除苯酚的数据。在这项研究中,我们使用了高通量测序技术来研究碳砂生物滤池中的微生物群落结构。结果表明,主要的细菌群是芽孢杆菌,其次是γ-变形杆菌,梭状芽胞杆菌和α-变形杆菌。此外,分离出能够在100分钟内以500μg/ L的低浓度降解苯酚的菌株,并将其鉴定为Rhodococcus sp。 CS-1。转录组分析结果表明,红球菌属。 CS-1能够通过β-酮己二酸途径的儿茶酚和原儿茶酸分支降解酚。此外,已成功鉴定出一些新颖的候选生物标志物(铜氧化酶,铜伴侣蛋白和MarR / DeoR / TetR家族转录调节因子)可能与酚的生物降解有关。这项研究表明,碳砂过滤器具有修复苯酚的潜力。将天然微生物应用于饮用水处理系统是贫营养水环境中的一种自适应策略。

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