Scinovex
review Open AccessTop 1% cited

Ecology and physiology of anaerobic ammonium oxidizing bacteria

Environmental Microbiology · 2015 · Vol. 18(9) · pp. 2784–2796
Mamoru OshikiHisashi SatohSatoshi Okabe

Abstract

Anaerobic ammonium oxidation (anammox) is a microbial process in which NH4 (+) is oxidized to N2 gas with NO2 (-) as an electron acceptor. The anammox process is mediated by bacterial members affiliated with the phylum Planctomycetes, which are ubiquitously detected from anoxic natural and man-made ecosystems and a key player in the global nitrogen cycle. In the past two decades, phylogenetically different anammox bacteria have been recognized in natural and synthetic ecosystems (i.e. 'Candidatus Kuenenia', 'Candidatus Brocadia', 'Candidatus Jettenia', 'Candidatus Anammoxoglobus' and 'Candidatus Scalindua' genera), and the geographic distributions of these anammox bacteria indicate that they have genus-specific or species-specific habitats. Recently, we revealed the physiological characteristics of 'Ca. Jettenia' in addition to 'Ca. Kuenenia', 'Ca. Brocadia' and 'Ca. Scalindua', and, as a result, it is possible to compare the physiological characteristics of the anammox bacteria and discuss their niche partitioning. Therefore, we summarize the current knowledge of anammox bacterial ecology and physiology in this review to assess the potential ecological niche partitioning of anammox bacteria in natural and synthetic ecosystems.

Wastewater Treatment and Nitrogen RemovalWater Treatment and DisinfectionMicrobial Fuel Cells and BioremediationBiologyEcologyOxidizing agentMicrobial ecologyBacteriaAnaerobic exerciseAnammoxAmmoniumPhysiologyMicrobiology

MeSH terms

Quaternary Ammonium CompoundsAnaerobiosisBacteriaOxidation-ReductionEcosystemBacterial Physiological Phenomena

Funding

  • Institute for Fermentation, Osaka
  • Steel Foundation for Environmental Protection Technology
  • Japan Society for the Promotion of Science
  • Japan Science and Technology Agency
  • Core Research for Evolutional Science and Technology
Citations
432
FWCI
15.14
field-weighted impact
References
151
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.