Testing the priming effect in the deep ocean: are microbes too starved to consume recalcitrant organic carbon?

The oceans store vast amounts dissolved organic carbon (DOC) that can resist microbial degradation for thousands of years. The mechanisms that underlie the long-term stability of DOC in the ocean are still debated. Microorganisms in this environment exhibit low metabolic activity and are energetically starved. We tested whether the microbial degradation of DOC could be stimulated through the addition of labile compounds. Surprisingly, alleviating energetic constraints did not stimulate the consumption of deep ocean DOC. Additionally, our results suggest that competition among taxa is an important constraint on dissolved organic carbon consumption, with implications for ecosystem processing. Our study indicates that an increase in fresh organic carbon to the deep ocean may enhance carbon sequestration since marine microbes are known to produce recalcitrant compounds. This finding is of consequence for ongoing geoengineering efforts that aim to remove atmospheric carbon by increasing carbon export to the deep sea.

Identifier
Source https://data.blue-cloud.org/search-details?step=~0120F98BAD64DCC643C9F40DF0E68C75441E6F26640
Metadata Access https://data.blue-cloud.org/api/collections/0F98BAD64DCC643C9F40DF0E68C75441E6F26640
Provenance
Instrument 532; 308
Publisher Blue-Cloud Data Discovery & Access service; ELIXIR-ENA
Publication Year 2026
OpenAccess true
Contact blue-cloud-support(at)maris.nl
Representation
Discipline Marine Science
Spatial Coverage (-0.573W, -56.416S, -0.573E, -56.416N)
Temporal Coverage Begin 2024-02-15T00:00:00Z
Temporal Coverage End 2024-03-15T00:00:00Z