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Ammonia-oxidizing archaea possess a wide range of cellular ammonia affinities

Authors :
Petra Pjevac
Linda Hink
Michael Wagner
Graeme W. Nicol
Barbara Bayer
Laura E. Lehtovirta-Morley
José R. de la Torre
Craig W. Herbold
Anna J. Mueller
Christopher J. Sedlacek
Chloe Wright
Holger Daims
Man-Young Jung
K. Dimitri Kits
Sung-Keun Rhee
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

Nitrification, the oxidation of ammonia to nitrate, is an essential process in the biogeochemical nitrogen cycle. The first step of nitrification, ammonia oxidation, is performed by three, often co- occurring guilds of chemolithoautotrophs: ammonia-oxidizing bacteria (AOB), archaea (AOA), and complete ammonia oxidizers (comammox). Substrate kinetics are considered to be a major niche-differentiating factor between these guilds, but few AOA strains have been kinetically characterized. Here, the ammonia oxidation kinetic properties of 12 AOA representing all major phylogenetic lineages were determined using microrespirometry. Members of the genus Nitrosocosmicus have the lowest substrate affinity of any characterized AOA, which are similar to previously determined affinities of AOB. This contrasts previous assumptions that all AOA possess much higher substrate affinities than their comammox or AOB counterparts. The substrate affinity of ammonia oxidizers correlated with their cell surface area to volume ratios. In addition, kinetic measurements across a range of pH values strongly supports the hypothesis that – like for AOB – ammonia and not ammonium is the substrate for the ammonia monooxygenase enzyme of AOA and comammox. Together, these data will facilitate predictions and interpretation of ammonia oxidizer community structures and provide a robust basis for establishing testable hypotheses on competition between AOB, AOA, and comammox.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........7ced847571d029efc0f4b03ce8e04cfc
Full Text :
https://doi.org/10.1101/2021.03.02.433310