Published December 2018 | Version v1
Journal article

Incorporation of 13C-HCO3 by ammonia-oxidizing archaea and bacteria during ammonia oxidation of sludge from a municipal wastewater treatment plant

  • 1. Chulalongkorn University, Department of Environmental Engineering, Faculty of Engineering (Thailand)
  • 2. University of Tokyo, Research Center for Water Environment Technology, Graduate School of Engineering (Japan)
  • 3. Innovation Institute, PTT Public Company Limited, Environmental Technology Research Department (Thailand)
  • 4. Bangkok Metropolitan Administration, Water Quality Management Office, Department of Drainage and Sewerage (Thailand)
  • 5. Chulalongkorn University, Center of Excellence on Hazardous Substance Management (HSM) (Thailand)

Description

Ammonia-oxidizing archaea (AOA) have recently been proposed as potential players for ammonia removal in wastewater treatment plants (WWTPs). However, there is little evidence directly showing the contribution of AOA to ammonia oxidation in these engineered systems. In this study, DNA-stable isotope probing (DNA-SIP) with labeled 13C-HCO3 was introduced to sludge from a municipal WWTP. Quantitative PCR demonstrated that AOA amoA genes outnumbered AOB amoA genes in this WWTP sludge. AOA amoA gene sequence analysis revealed that AOA present in this WWTP were specific to one subcluster within the group 1.1b Thaumarchaeota. When ammonia was supplied to DNA-SIP incubation, the DNA-SIP profiles demonstrated the incorporation of the 13C into AOA and AOB. However, the 13C was not found to be assimilated into both microorganisms in the incubation without ammonia. Specific primers were designed to target amoA genes of AOA belonging to the subcluster found in this WWTP. Applying the primers to DNA-SIP experiment revealed that AOA of this subcluter most likely utilized inorganic carbon during ammonia oxidation under the studied conditions.

Additional details

Identifiers

Publishing Information

Journal Title
Applied Microbiology and Biotechnology
Journal Volume
102
Journal Issue
24
Journal Page Range
p. 10767-10777
ISSN
0175-7598
CODEN
AMBIDG

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Copyright
Copyright (c) 2018 Springer-Verlag GmbH Germany, part of Springer Nature