https://doi.org/10.25678/0002MA

Data for: Temperature modulates stress response in mainstream anammox reactors

Autotrophic nitrogen removal by anaerobic ammonium oxidizing (anammox) bacteria is an energy-efficient nitrogen removal process in wastewater treatment. However, full-scale deployment under mainstream conditions remains challenging for practitioners due to the high stress susceptibility of anammox bacteria towards fluctuations in dissolved oxygen (DO) and temperature. Here, we investigated the response of microbial biofilms with verified anammox activity to DO shocks under 20 °C and 14 °C. While pulse disturbances of 0.3 mg L−1 DO prompted only moderate declines in the NH4+ removal rates, 1.0 mg L−1 DO led to complete but reversible inhibition of the NH4+ removal activity in all reactors. Genome-centric metagenomics and metatranscriptomics were used to investigate the stress response on various biological levels. We show that temperature regime and strength of DO perturbations induced divergent responses from the process level down to the transcriptional profile of individual taxa. Community-wide gene expression differed significantly depending on the temperature regime in all reactors, and we found a noticeable impact of DO disturbances on genes involved in transcription, translation, replication and posttranslational modification at 20 °C but not 14 °C. Genome-centric analysis revealed that different anammox species and other key biofilm taxa differed in their transcriptional responses to distinct temperature regimes and DO disturbances.

Data and Resources

Citation

This Data Package

Niederdorfer, R., Hausherr, D., Palomo, A., Wei, J., Magyar, P., Smets, B. F., et al. (2019). Data for: Temperature modulates stress response in mainstream anammox reactors (Version 1.0) [Data set]. Eawag: Swiss Federal Institute of Aquatic Science and Technology. https://doi.org/10.25678/0002MA

The associated article

Niederdorfer, R., Hausherr, D., Palomo, A., Wei, J., Magyar, P., Smets, B. F., et al. (2021). Temperature modulates stress response in mainstream anammox reactors. Communications Biology, 4(1), 23. https://doi.org/10.1038/s42003-020-01534-8

Metadata

Open Data Open Data
Long-term data Long-term data
Author
  • Niederdorfer, Robert
  • Hausherr, Damian
  • Palomo, Alejandro
  • Wei, Jing
  • Magyar, Paul
  • Smets, Barth F.
  • Joss, Adriano
  • Bürgmann, Helmut
Keywords mainstream anammox,transcriptomics,bioreactor ecology,biofilm,stress response,microbial community
Variables
  • bacteria_abundance
  • dissolved_oygen
  • temperature
  • total_nitrogen
Substances (generic terms)
  • micropollutants
  • wastewater
Taxa (scientific names)
  • Cd. Brocadia sp.
  • Nitrospira sp.
Organisms (generic terms)
  • Bacteria
Systems
  • bioreactor
  • wastewater treatment
Timerange
  • 2018-05
Geographic Name(s)
  • Versuchshalle EAWAG Dübendorf; Switzerland
Review Level none
Curator Buergmann, Helmut
Contact Helmut.Buergmann@eawag.ch
DOI 10.25678/0002MA