4.8 Article

DNA-based stable isotope probing deciphered the active denitrifying bacteria and triclosan-degrading bacteria participating in granule-based partial denitrification process under triclosan pressure

期刊

WATER RESEARCH
卷 210, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2021.118011

关键词

Partial denitrification; Triclosan; Antibiotic resistance genes; DNA stable isotope probing; Active partial denitrifying bacteria; Active triclosan-degrading bacteria

资金

  1. National Natural Science Foundation of China [52170016, 51578015]
  2. Beijing Natural Science Foundation [8202006]
  3. Beijing Municipal Science and Technology Commission [Z181100005518002]
  4. China Postdoctoral Science Foundation [2020M680279]

向作者/读者索取更多资源

TCS has an adverse influence on PD performance and microbial community in granule-based PD system, but the system can gradually recover. After domestication, PD granular sludge can achieve a certain efficiency in TCS degradation and adsorption. Microbes may increase their resistance to TCS by increasing the secretion of extracellular polymeric substances.
Granule-based partial denitrification (PD) is a technology that can supply stable nitrite for applying anaerobic ammonia oxidation in wastewater treatment, and triclosan (TCS) is a frequently detected antibacterial agent in wastewater treatment plants, therefore it is possible that TCS could enter into wastewater that is treated using PD technology. However, the active microorganisms responsible for PD and TCS removing in granule-based PD system have not been clearly identified and it is currently not clear how TCS affects the PD process. In this study, the impacts of TCS on PD performance, PD microbial community, antibiotic resistance genes (ARGs), active PD bacteria and TCS-degrading bacteria in a granule-based PD system were investigated. 3 mg/L TCS had adverse influence on PD process, but PD system could recover gradually after inhibiting of 10 days. After a period of domestication, PD granular sludge could achieve 10.66% of TCS degradation efficiency and 43.62% of TCS adsorption efficiency. Microbes might increase their resistance to TCS by increasing the secretion of extracellular polymeric substances, and the secretion of protein might play a more pivotal role than the secretion of polysaccharides in resisting TCS. The short-term shock of TCS might cause the propagation of acrA-03, while the longterm operation of TCS could propagate fabK and intI1. DNA stable isotope probing assay indicated that Thauera was active PD bacteria and TCS-degrading bacteria in the granule-based PD system, and it could contribute to nitrite accumulation and TCS degradation, simultaneously.

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