Nascent nitrifying community response to monochloramine exposure in drinking water

Nitrifiers autochthonous to drinking water distribution systems (DWDS) were enriched in separate ammonia-oxidizing Archaea (AOA), ammonia-oxidizing Bacteria (AOB) and nitrite-oxidizing Bacteria (NOB) enrichment cultures. A strategy was developed to selectively enrich AOA from DWDS biofilms containin...

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Main Author: Woo, Yissue
Other Authors: Stefan Wuertz
Format: Thesis-Doctor of Philosophy
Language:English
Published: Nanyang Technological University 2021
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Online Access:https://hdl.handle.net/10356/153741
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1537412023-03-05T16:31:42Z Nascent nitrifying community response to monochloramine exposure in drinking water Woo, Yissue Stefan Wuertz Interdisciplinary Graduate School (IGS) Singapore Centre for Environmental Life Sciences and Engineering (SCELSE) SWuertz@ntu.edu.sg Engineering::Environmental engineering::Water supply Science::Biological sciences::Microbiology Science::Biological sciences::Molecular biology Nitrifiers autochthonous to drinking water distribution systems (DWDS) were enriched in separate ammonia-oxidizing Archaea (AOA), ammonia-oxidizing Bacteria (AOB) and nitrite-oxidizing Bacteria (NOB) enrichment cultures. A strategy was developed to selectively enrich AOA from DWDS biofilms containing both AOA and AOB, while new primers were designed to improve the quantification of the amoA and nxrB gene copies of AOA/AOB and NOB, respectively, using quantitative PCR and droplet digital PCR. Over several years, individual cultures containing AOA, AOB and NOB were enriched to 51.6 %, 71.2 % and 73.5 %, respectively. The nitrifiers were closely related to Nitrososphaera viennensis for AOA, Nitrosomonas oligotropha for AOB and Nitrospira moscoviensis for NOB. Under planktonic growth conditions, NOB were more resistant to monochloramine than AOA and AOB, and AOB were more resistant than AOA at lower monochloramine concentrations. Monochloramine also inactivated specific nitrifiers experimentally enriched in biofilms, but a small fraction of AOA or AOB cells persisted, likely due to the low concentration of free ammonia in the chloraminated bulk water. The persistence of AOA and AOB in the nitrifying biofilms after continuous exposure to monochloramine could be due to monochloramine cometabolism, where intracellular monochloramine was degraded by ammonia monooxygenase while also performing ammonia oxidation. This study is the first to address the effect of monochloramine on NOB and the regrowth potential of all three types of nitrifiers under planktonic conditions. By directly comparing monochloramine resistance under planktonic and biofilm conditions in the absence of other nitrifier groups fundamental insights were obtained on their respective roles in DWDS. Doctor of Philosophy 2021-12-21T13:05:36Z 2021-12-21T13:05:36Z 2021 Thesis-Doctor of Philosophy Woo, Y. (2021). Nascent nitrifying community response to monochloramine exposure in drinking water. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/153741 https://hdl.handle.net/10356/153741 10.32657/10356/153741 en This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0). application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Environmental engineering::Water supply
Science::Biological sciences::Microbiology
Science::Biological sciences::Molecular biology
spellingShingle Engineering::Environmental engineering::Water supply
Science::Biological sciences::Microbiology
Science::Biological sciences::Molecular biology
Woo, Yissue
Nascent nitrifying community response to monochloramine exposure in drinking water
description Nitrifiers autochthonous to drinking water distribution systems (DWDS) were enriched in separate ammonia-oxidizing Archaea (AOA), ammonia-oxidizing Bacteria (AOB) and nitrite-oxidizing Bacteria (NOB) enrichment cultures. A strategy was developed to selectively enrich AOA from DWDS biofilms containing both AOA and AOB, while new primers were designed to improve the quantification of the amoA and nxrB gene copies of AOA/AOB and NOB, respectively, using quantitative PCR and droplet digital PCR. Over several years, individual cultures containing AOA, AOB and NOB were enriched to 51.6 %, 71.2 % and 73.5 %, respectively. The nitrifiers were closely related to Nitrososphaera viennensis for AOA, Nitrosomonas oligotropha for AOB and Nitrospira moscoviensis for NOB. Under planktonic growth conditions, NOB were more resistant to monochloramine than AOA and AOB, and AOB were more resistant than AOA at lower monochloramine concentrations. Monochloramine also inactivated specific nitrifiers experimentally enriched in biofilms, but a small fraction of AOA or AOB cells persisted, likely due to the low concentration of free ammonia in the chloraminated bulk water. The persistence of AOA and AOB in the nitrifying biofilms after continuous exposure to monochloramine could be due to monochloramine cometabolism, where intracellular monochloramine was degraded by ammonia monooxygenase while also performing ammonia oxidation. This study is the first to address the effect of monochloramine on NOB and the regrowth potential of all three types of nitrifiers under planktonic conditions. By directly comparing monochloramine resistance under planktonic and biofilm conditions in the absence of other nitrifier groups fundamental insights were obtained on their respective roles in DWDS.
author2 Stefan Wuertz
author_facet Stefan Wuertz
Woo, Yissue
format Thesis-Doctor of Philosophy
author Woo, Yissue
author_sort Woo, Yissue
title Nascent nitrifying community response to monochloramine exposure in drinking water
title_short Nascent nitrifying community response to monochloramine exposure in drinking water
title_full Nascent nitrifying community response to monochloramine exposure in drinking water
title_fullStr Nascent nitrifying community response to monochloramine exposure in drinking water
title_full_unstemmed Nascent nitrifying community response to monochloramine exposure in drinking water
title_sort nascent nitrifying community response to monochloramine exposure in drinking water
publisher Nanyang Technological University
publishDate 2021
url https://hdl.handle.net/10356/153741
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