Jul 2026· Proceedings of the National Academy of Sciences of the United States of America· Vol 123 31, pp.
e2601044123
· 2 citations· 76 references
Medicine
TL;DR
The findings substantiate the direct microbial contribution to the long-lived oceanic carbon reservoir through the rapid diversification of RDOM isomers, a mechanism that contributes to sustaining the complexity and long-term persistence of the planetary-scale carbon reservoir.
Abstract
Marine microbes have long been regarded as central to replenishing the ocean's reservoir of recalcitrant dissolved organic matter (RDOM). However, molecular-level evidence for their role remains inconclusive because RDOM persists for years to millennia, far exceeding timescales accessible to laboratory experiments, and because conventional analytical approaches lack the resolution to discern structural isomers of RDOM that confer functionally important differences in persistence. Using polarity-based liquid chromatography coupled to ultrahigh-resolution mass spectrometry capable of discriminating RDOM isomer clusters, we reveal that marine microbial consortia rapidly (≤ 90 d) convert diverse organic substrates into RDOM with extensive structural isomerism that closely mirrors natural seawater RDOM. A subset of these microbially derived RDOM compounds exhibits near-ubiquitous occurrence (> 99%) in a global dataset and accumulates progressively in the ocean's interior. Together, our findings substantiate the direct microbial contribution to the long-lived oceanic carbon reservoir through the rapid diversification of RDOM isomers, a mechanism that contributes to sustaining the complexity and long-term persistence of the planetary-scale carbon reservoir.
Macroalgae, the dominant primary producers of Earth’s most productive coastal vegetated ecosystems and a vital component driving ocean carbon sequestration, produce ∼5 to 80% of their net primary productivity as dissolved organic carbon (DOC). However, the global extent, fate, and contribution of this macroalgae-derive...
Xiu-Ting Feng, Shailesh Nair, K. Hancke et al.· Science Advances· 0 citations
During the Phanerozoic, the ocean repeatedly experienced periods of widespread deoxygenation known as oceanic anoxic events. Geological records from these events indicate a profound shift in marine microbial ecosystems. While cyanobacterial biomarkers are found broadly, those of anoxygenic photosynthetic green sulfur b...
Tenga Yokoyama, E. Tajika, Yasuto Watanabe et al.· Progress in Earth and Planet...· 0 citations
Algal-bacterial interactions regulate the production and fate of marine particulate organic carbon (POC), yet their capacity to generate long-lived carbon sinks remains unclear. Using a two-year, nutrient-self-sustaining co-culture of Synechococcus and its mutualistic microbiota, we demonstrate that sustained algal-bac...
Ammonium availability may alter microbial access to persistent dissolved organic matter (DOM), but the response capacity of indigenous deep-water microbial communities remains poorly constrained. We used dark microcosms established with South China Sea seawater from 500 and 2000 m to examine microbial and DOM responses...
Guodong Sun, Lingli Qiu, Peng Zhang et al.· Environmental Science and Te...· 0 citations
Microbial carbon demand often exceeds local primary production in the oligotrophic central Arctic Ocean. Whether shelf‐derived dissolved organic carbon (DOC) provides a persistent carbon subsidy to reconcile this imbalance remains unclear. Here, we combine amino acid‐based molecular tracers and hydrographic analyses to...
Yao Gao, Jin-Qiang Guo, E. Achterberg et al.· Geophysical Research Letters· 0 citations
Phosphorus scarcity constrains microbial activity in parts of the oligotrophic ocean, yet the extent to which dissolved organic phosphorus (DOP) supports microbial P demand remains unresolved. Here, we quantified the concentrations, turnover times, and uptake kinetics of PO
4
and the DOP compound adenosine-tripho...
E. Rahav, G. Sisma-Ventura, T. Browning et al.· Scientific Reports· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.