Affiliation:
1. Key Laboratory of Water and Sediment Sciences, Ministry of Education, Department of Environmental Engineering Peking University Beijing China
2. Department of Biogeochemistry Max Planck Institute for Marine Microbiology Bremen Germany
3. China Institute of Water Resources and Hydropower Research Beijing China
4. National Research Center for Sustainable Hydropower Development Beijing China
5. Institute of Environment Pollution Control and Treatment, College of Environment and Resource Science Zhejiang University Hangzhou China
Abstract
AbstractThe stable isotope technique has been used in tracking nitrogen cycling processes, but the isotopic characteristics are influenced by environmental conditions. To better understand the variability of nitrate isotopes in nature, we investigated the influence of organic carbon sources on isotope fractionation characteristics during microbial denitrification. Denitrifying cultures were inoculated with freshwater samples and enriched with five forms of organic compounds, that is, acetate, citrate, glucose, cellobiose, and leucine. Though the isotope enrichment factors of nitrogen and oxygen (15ε and 18ε) changed with carbon sources, 18ε/15ε always followed a proportionality near 1. Genome‐centred metagenomics revealed the enrichment of a few populations, such as Pseudomonas, Enterobacter, and Atlantibacter, most of which contained both NapA‐ and NarG‐type nitrate reductases. Metatranscriptome showed that both NapA and NarG were expressed but to different extents in the enrichments. Furthermore, isotopic data collected from a deep reservoir was analysed. The results showed δ18O‐ and δ15N‐nitrate did not correlate in the surface water where nitrification was active, but 18ε/15ε followed a proportionality of 1.05 ± 011 in deeper waters (≥ 12 m) where denitrification controlled the nitrate isotope. The independence of 18ε/15ε from carbon sources provides an opportunity to determine heterotrophic denitrification and helps the interpretation of nitrate isotopes in freshwaters.
Subject
Ecology, Evolution, Behavior and Systematics,Microbiology
Cited by
2 articles.
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