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Tetracycline Resistance Genes and Tetracycline Resistant Lactose-Fermenting Enterobacteriaceae in Activated Sludge of Sewage Treatment Plants

机译:污水处理厂活性污泥中的四环素抗性基因和四环素抗性乳糖发酵肠杆菌科

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摘要

Activated sludges were sampled from five sewage treatment plants (STPs) distributed in three geographically isolated areas, i.e., Hong Kong (Shatin, Stanley), Shanghai (Minhang) in China, and the bay area in California (Palo Alto and San Jose) of the United States. Among the tested 14 tetracycline resistance (tet) genes, nine genes encompassing efflux pumps (fefA, tetC, tetE, and tetG), ribosomal protection proteins (fefM, tetO, tetd, and tetS), and enzymatic modification (tetX) were commonly detected in the STP sludge samples, whereas five genes encompassing efflux pumps [tetB, tetD, tetL, tetK, and tetA(P)] were not detected in any sludge sample. Additionally, 109 lactose-fermenting Enterobacteriaceae (LFE) strains were isolated from the activated sludge of the Shatin STP. Tetracycline-resistant (TR) LFE accounted for 32% of the total 109 LFE strains.The occurrence frequencies of fef genes among all TR-LEF strains varied from 0 to 91%, i.e., tetC (91%), tetA (46%), tetE (9%), tetG (6%), and tetD (6%). Finally, quantitative real-time polymerase chain reaction was used to quantify the change of fefC and tetA genes as the indicator of TR-LEF in the Shatin and Stanley STPs. The results showed that the concentrations of tetC and tetA genes in STP effluent ranged from 10~4 to 10~5 copies/mL, significantly lower than those in the influent by 3 orders of magnitude.
机译:活性污泥来自分布在三个地理隔离区域的五个污水处理厂(STP),三个地理隔离区域分别是中国香港(沙田,史丹利),上海(闵行)和加利福尼亚湾区(帕洛阿尔托和圣何塞)。美国。在测试的14个四环素抗性(tet)基因中,通常检测到9个基因,包括外排泵(fefA,tetC,tetE和tetG),核糖体保护蛋白(fefM,tetO,tetd和tetS)和酶促修饰(tetX)。在STP污泥样品中,没有发现包含外排泵的5个基因[tetB,tetD,tetL,tetK和tetA(P)]。此外,从沙田STP的活性污泥中分离出109株乳糖发酵肠杆菌科(LFE)菌株。四环素抗性(FE)LFE占109株LFE菌株的32%.fe-基因在所有TR-LEF菌株中的出现频率从0到91%不等,即tetC(91%),tetA(46%) ,tetE(9%),tetG(6%)和tetD(6%)。最后,实时定量聚合酶链反应用于量化fefC和tetA基因的变化,作为Shatin和Stanley STP中TR-LEF的指标。结果表明,STP废水中tetC和tetA基因的浓度范围为10〜4〜10〜5拷贝/ mL,比进水中的tetC和tetA基因浓度低3个数量级。

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  • 来源
    《Environmental Science & Technology》 |2009年第10期|3455-3460|共6页
  • 作者单位

    Environmental Biotechnology Laboratory, Department of Civil Engineering, The University of Hong Kong,Hong Kong SAR, China;

    Environmental Biotechnology Laboratory, Department of Civil Engineering, The University of Hong Kong,Hong Kong SAR, China;

    Environmental Biotechnology Laboratory, Department of Civil Engineering, The University of Hong Kong,Hong Kong SAR, China;

    Environmental Biotechnology Laboratory, Department of Civil Engineering, The University of Hong Kong,Hong Kong SAR, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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