Using metatranscriptomics to better understand the role of microbial nitrogen cycling in coastal sediment benthic flux denitrification efficiency

Author:

Marshall Alexis J.12ORCID,Phillips Lori2,Longmore Andrew3,Hayden Helen L.24ORCID,Tang Caixian1,Heidelberg Karla B.5ORCID,Mele Pauline12ORCID

Affiliation:

1. La Trobe University AgriBio Centre for AgriBiosciences Bundoora Australia

2. Department of Jobs, Precincts and Regions AgriBio, Centre for AgriBiosciences Bundoora Australia

3. Centre for Aquatic Pollution Identification and Management Melbourne University Parkville Australia

4. School of Agriculture and Food, Faculty of Veterinary and Agricultural Sciences The University of Melbourne Parkville Victoria Australia

5. Department of Biology The University of Southern California Los Angeles California USA

Abstract

AbstractSpatial and temporal variability in benthic flux denitrification efficiency occurs across Port Phillip Bay, Australia. Here, we assess the capacity for untargeted metatranscriptomics to resolve spatiotemporal differences in the microbial contribution to benthic nitrogen cycling. The most abundant sediment transcripts assembled were associated with the archaeal nitrifier Nitrosopumilus. In sediments close to external inputs of organic nitrogen, the dominant transcripts were associated with Nitrosopumilus nitric oxide nitrite reduction (nirK). The environmental conditions close to organic nitrogen inputs that select for increased transcription in Nitrosopumilus (amoCAB, nirK, nirS, nmo, hcp) additionally selected for increased transcription of bacterial nitrite reduction (nxrB) and transcripts associated with anammox (hzo) but not denitrification (bacterial nirS/nirk). In sediments that are more isolated from external inputs of organic nitrogen dominant transcripts were associated with nitrous oxide reduction (nosZ) and changes in nosZ transcript abundance were uncoupled from transcriptional profiles associated with archaeal nitrification. Coordinated transcription of coupled community‐level nitrification–denitrification was not well supported by metatranscriptomics. In comparison, the abundance of archaeal nirK transcripts were site‐ and season‐specific. This study indicates that the transcription of archaeal nirK in response to changing environmental conditions may be an important and overlooked feature of coastal sediment nitrogen cycling.

Funder

Department of Environment, Land, Water and Planning, State Government of Victoria

Melbourne Water

Publisher

Wiley

Subject

Agricultural and Biological Sciences (miscellaneous),Ecology, Evolution, Behavior and Systematics

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