bioRxiv · 10.64898/2026.02.02.703227
A national baseline for methane sink habitats and methanotroph diversity
Abstract
Methane emissions account for nearly a third of the Earths effective radiative forcing, with methanotrophs playing a critical role in mitigating emissions by oxidising methane in diverse environments1. Despite their ecological importance, methanotrophic diversity and environmental distribution remain incompletely characterised due to cultivation challenges, incomplete or low-quality metagenome-assembled genomes, and limited taxonomic resolution in marker gene surveys. Here, we present a national study of the biogeography of novel and known methanotrophs across Denmarks major natural, urban and agricultural habitats, using genome-resolved classification of 10,683 metagenomes2 and 102 new methanotrophic species3. By linking metabolic potential to habitat-specific distributions, we reveal uncharacterised methanotrophs as dominant in natural ecosystems. These findings provide a comprehensive baseline of methanotroph diversity, reveal clear contrasts between natural and disturbed habitats, and highlight candidate species and habitats for future methane-mitigation strategies.
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Knudsen, K. S., Sereika, M., Jensen, T. B., Delogu, F., Schmider, T., Jiang, C., Kirkegaard, R., Tveit, A. T., Nielsen, P. H., Albertsen, M., Singleton, C. M.. 2026-02-02. A national baseline for methane sink habitats and methanotroph diversity. https://doi.org/10.64898/2026.02.02.703227
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