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首页> 外文期刊>Science of the total environment >Effect of earthworms in reduction and fate of antibiotic resistant bacteria (ARB) and antibiotic resistant genes (ARGs) during clinical laboratory wastewater treatment by vermifiltration
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Effect of earthworms in reduction and fate of antibiotic resistant bacteria (ARB) and antibiotic resistant genes (ARGs) during clinical laboratory wastewater treatment by vermifiltration

机译:蚯蚓在抗ermifratoration临床实验室废水处理中抗生素抗性细菌(Arb)和抗生素抗性基因(Args)减少和命运的影响

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摘要

In the recent decades,the role of wastewater treatment plants has been entrenched for the dissemination of antibiotic resistant bacteria into the environment.The present study explores the dynamics of earthworms-microorganisms interactions involved in the high treatment efficacy of vermifiltration technology along with reduction of antibiotic resistant bacteria (ARB).This study is the first of its kind to investigate the performance efficacy of vermifilter (VF) for clinical laboratory wastewater treatment.The results of the study showed that earthworms and VF associated microbial community had a significant effect on Biochemical Oxygen Demand (BOD) and Chemical Oxygen Demand (COD) reduction (78-85%),coliforms and pathogen removal (>99.9%) and caused a significant shift in the prevalence pattern of ARB.Molecular profiling of resistance causing genes such as ESBL (bla_(SHV),bla_(TEM) and bla_(CTX-M)).MRSA (mec-A.) and Colistin (mcr-1) confirmed the probable mechanisms behind the resistance pattern.The microbial community diversity in the influent,earthworm's coelomic fluid and gut and filter media layers associated with the VF assists in the formation of biofilm,which helps in the removal of pathogens from the wastewater.This biofilm formation further results in a paradigm shift in the resistance profile of ARB and ARC specifically most effective against drugs,targeting cell wall and protein synthesis inhibition such as Ampicillin,Ticarcillin,Gentamicin and Chloramphenicol.These findings further validate vermifiltration technology as a sustainable and natural treatment technology for clinical laboratory wastewater,specifically for the removal of pathogens and antibiotic resistance.
机译:近几十年来,废水处理厂的作用已被侵入抗生素抗ermifilration技术的蚯蚓 - 微生物的相互作用的动态探讨了蚯蚓 - 微生物的相互作用以及抗生素的还原抗性细菌(arb)。本研究是探讨抑制膏(vf)对临床实验室废水处理的性能疗效的第一个。研究结果表明,蚯蚓和vf相关的微生物群体对生物化学氧有显着影响需求(BOD)和化学需氧量(COD)还原(78-85%),大肠菌和病原体去除(> 99.9%),并导致抗抗抗性的分散性分析诸如ESBL( BLA_(SHV),BLA_(TEM)和BLA_(CTX-M))。MRSA(MEC-A。)和COLISTIN(MCR-1)证实了抵抗的可能机制CE模式。与VF相关的流动性,蚯蚓的微生物群落多样性,与VF相关的与VF相关的助剂辅助生物膜的形成,这有助于从废水中除去病原体。该生物膜形成进一步导致范式在Arb的电阻曲线变化和弧形的弧形和弧菌对药物最有效的,靶向细胞壁和蛋白质合成抑制,例如氨苄青霉素,TiCarcillin,庆大霉素和氯霉素。这些结果进一步验证了抑制技术作为临床实验室废水的可持续和天然处理技术,专门用于去除病原体和抗生素抗性。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|145152.1-145152.11|共11页
  • 作者单位

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Institute of Environmental and Occupational Health Sciences School of Medicine National Yang Ming University Taiwan;

    Environmental Engineering Group Department of Civil Engineering Indian Institute of Technology Roorkee India;

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Lal Institute of Biotechnology Malviya Industrial Area Malviya Nagar Jaipur 302017 India;

    Environmental Engineering Group Department of Civil Engineering Indian Institute of Technology Roorkee India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antimicrobial resistance; Antibiotic resistance genes; Clinical laboratory wastewater; Earthworms; Pathogens; Vermifilter; Wastewater treatment;

    机译:抗微生物抗性;抗生素抗性基因;临床实验室废水;蚯蚓;病原体;蚯蚓;废水处理;

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