Abstract
Marine dissolved organic matter (DOM) is a major carbon reservoir that acts as a critical control on the Earth’s climate. DOM dynamics are largely regulated by a complex web of chemical-microbial interactions, but the mechanisms underpinning these processes are not well understood. In a three-year time-series, we found that the identity of the microbes is more likely to change between years than the composition of the DOM molecules. The taxonomic variability suggests that metabolisms shared across taxa, encoded by genes that conduct core microbial functions, are responsible for the more stable composition of DOM. While more than three decades of marine prokaryoplankton time-series are available, a similar reference for DOM molecules was missing. This time-series provides an improved understanding of the different responses of DOM molecules and microbes to seasonal environmental changes.
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CITATION STYLE
McParland, E. L., Wittmers, F., Bolaños, L. M., Carlson, C. A., Curry, R., Giovannoni, S. J., … Kujawinski, E. B. (2026). Seasonal patterns of DOM molecules are linked to microbial functions in the oligotrophic ocean. MSystems, 11(2). https://doi.org/10.1128/msystems.01540-25
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