A novel bacterium carrying out anaerobic ammonium oxidation in a reactor for biological treatment of the filtrate of wastewater fermented ... View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2013-09

AUTHORS

S. V. Khramenkov, M. N. Kozlov, M. V. Kevbrina, A. G. Dorofeev, E. A. Kazakova, V. A. Grachev, B. B. Kuznetsov, D. Yu. Polyakov, Yu. A. Nikolaev

ABSTRACT

A new genus and species of bacteria capable of ammonium oxidation under anaerobic conditions in the presence of nitrite is described. The enrichment culture was obtained from the Moscow River silt by sequential cultivation in reactors with selective conditions for anaerobic ammonium oxidation. Bacterial cells were coccoid, ∼0.4 × 0.7 μm, with the intracellular membrane structures typical of bacteria capable of anaerobic ammonium oxidation (anammoxosome and paryphoplasm). The cells formed aggregates 5–25 μm in diameter (10 μm on average). They were readily adhered to solid surfaces. The cells were morphologically labile: they easily lost their content and changed their morphology during fixation for electron microscopy. The organism was capable of ammonium oxidation with nitrite. The semisaturation constants Ks for nitrite and ammonium were 0.38 mg N-NO2/L and 0.41 mg N-NH4/L, respectively. The maximal nitrite concentrations for growth were 90 and 75 mg N-NO2/L for single and continuous application, respectively. The doubling time was 32 days, μmax = 0.022 day−1, the optimal temperature and pH were 20°C and 7.8–8.3, respectively. According to the results of 16S rRNA gene sequencing, the bacterium was assigned to a new genus and species within the phylum Planctomycetes. The proposed name for the new bacterium is Candidatus Anammoximicrobium moscowii gen. nov., sp. nov. (a microorganism carrying out anaerobic ammonium oxidation, isolated in the Moscow region). More... »

PAGES

628-636

Journal

TITLE

Microbiology

ISSUE

5

VOLUME

82

Author Affiliations

Identifiers

URI

http://scigraph.springernature.com/pub.10.1134/s002626171305007x

DOI

http://dx.doi.org/10.1134/s002626171305007x

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1014068752


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