Genomic Insights into the Landfill Microbial Community: Denitrifying Activity Supporting One-Carbon Utilization
Author:
Funder
SERB, New Delhi
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s12010-024-04980-w.pdf
Reference76 articles.
1. Yurimoto, H., Shiraishi, K., & Sakai, Y. (2021). Physiology of methylotrophs living in the phyllosphere. Microorganisms, 9(4), 809.
2. Cerminara, G., Raga, R., Hirata, O., & Pivato, A. (2020). Denitrification of low C/N landfill leachate in lab-scale landfill simulation bioreactors. Waste Management, 113, 236–243.
3. Strong, P. J., Xie, S., & Clarke, W. P. (2015). Methane as a resource: Can the methanotrophs add value? Environmental Science & Technology, 49(7), 4001–4018.
4. Anthony, C. (1982). The biochemistry of methylotrophs. Academic Press.
5. Lieberman, R. L., & Rosenzweig, A. C. (2005). Crystal structure of a membrane-bound metalloenzyme that catalyses the biological oxidation of methane. Nature, 434(7030), 177–182.
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