首页> 外文期刊>Environment protection engineering >THE EFFECTS OF SEASON AND PROCESSING TECHNOLOGY ON THE ABUNDANCE OF ANTIBIOTIC RESISTANCE GENES IN AIR SAMPLES FROM MUNICIPAL WASTEWATER TREATMENT AND WASTE MANAGEMENT PLANTS
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THE EFFECTS OF SEASON AND PROCESSING TECHNOLOGY ON THE ABUNDANCE OF ANTIBIOTIC RESISTANCE GENES IN AIR SAMPLES FROM MUNICIPAL WASTEWATER TREATMENT AND WASTE MANAGEMENT PLANTS

机译:季节和加工技术对城市废水处理和废物管理植物的空气样品中抗生素抗性基因丰富的影响

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摘要

This study aimed to perform a qualitative and a quantitative assessment of the prevalence of genes encoding resistance to beta-lactam, tetracycline, and chloramphenicol antibiotics in samples of DNA isolated from air in a municipal wastewater treatment plant (WWTP) and a municipal waste management plant (WMP). Air samples were collected in the mechanical (MP) and biological (BP) processing units of WWTP and WMP in winter and spring. The samples of air were collected by impingement into PBS solution and subsequently, DNA was isolated. The prevalence of the 16S rRNA gene and ARGs was determined by PCR, and the most abundant ARGs were quantified by qPCR. The highest diversity of the analyzed ARGs was noted in air samples collected in the mechanical processing units of the WWTP (winter) and the WMP (spring). The copy of ARGs varied between treatment units and seasons. ARGs were most abundant in air samples collected in spring in the MP units of both the WWTP and the WMP. The study demonstrated that ARGs are ubiquitous in the air in both WWTPs and WMPs. The presence of ARGs in the air can exert a negative impact on the health of plant employees.
机译:本研究旨在对从在城市废水处理厂(WWTP)和市政废物管理厂的DNA中,对β-内酰胺,四环素和氯霉素抗生素进行编码抗β-内酰胺,四环素和氯霉素抗生素的患病率的定性和定量评估。 (WMP)。在冬季和春季,在WWTP和WMP的机械(MP)和生物(BP)加工单元中收集空气样品。通过冲击PBS溶液并随后分离出空气样品。通过PCR测定16S rRNA基因和args的患病率,并且通过QPCR定量最丰富的args。在WWTP(冬季)和WMP(弹簧)的机械加工单元中收集的空气样品中,分析了分析的arg的最高分集。 args的副本在治疗单位和季节之间变化。在WWTP和WMP的MP单元中,春天收集的空气样本中最丰富的空气样本中。该研究表明,args在WWTP和WMPS中的空气中普遍存在。 args在空中的存在可以对植物员工的健康产生负面影响。

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  • 来源
    《Environment protection engineering》 |2021年第1期|101-114|共14页
  • 作者单位

    Univ Warmia & Mazury Fac Geoengn Dept Water Protect Engn & Environm Microbiol Ul Prawochenskiego 1 PL-10720 Olsztyn Poland;

    Univ Warmia & Mazury Fac Geoengn Dept Water Protect Engn & Environm Microbiol Ul Prawochenskiego 1 PL-10720 Olsztyn Poland;

    Univ Warmia & Mazury Fac Geoengn Dept Water Protect Engn & Environm Microbiol Ul Prawochenskiego 1 PL-10720 Olsztyn Poland;

    Univ Warmia & Mazury Fac Geoengn Dept Water Protect Engn & Environm Microbiol Ul Prawochenskiego 1 PL-10720 Olsztyn Poland;

    Univ Warmia & Mazury Fac Geoengn Dept Water Protect Engn & Environm Microbiol Ul Prawochenskiego 1 PL-10720 Olsztyn Poland;

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