Characterization of Phytoplankton-Excreted Metabolites Mediating Carbon Flux through the Surface Ocean
Zhu, Y.; Anderson, H. S.; Salcedo, E.; Miller, S. E.; Longnecker, K.; Soule, M. C. K.; Haley, S. T.; Swarr, G. J.; Braakman, R.; Dyhrman, S. T.; Kujawinski, E. B.
Show abstract
The marine labile dissolved organic carbon (DOC) pool is a dynamic reservoir of thousands of molecules that cycles approximately one-quarter of Earths primary production within days to weeks. After excretion by phytoplankton and other microbes, metabolites are rapidly consumed, resulting in low standing concentrations (picomolar to low nanomolar). Despite the decades-long search for labile DOC sources and molecular identities, marine phytoplankton exometabolomes are not well characterized, largely due to difficulties in measuring small polar molecules in saline water. Here, we profiled the exometabolomes of six axenic phytoplankton species representing key functional groups including a diatom (Thalassiosira pseudonana CCMP1335), a picoeukaryote (Micromonas commoda RCC299), a coccolithophore (Gephyrocapsa huxleyi CCMP371), a diazotrophic cyanobacterium (Crocosphaera watsonii WH8501), and two picocyanobacteria (Prochlorococcus marinus MIT 9301 and Synechococcus WH8102). From these cultures, we quantified 56 amine- and alcohol-containing exometabolites representing 11 compound classes which in sum comprised up to 23.4% of phytoplankton-excreted DOC. We estimated that these phytoplankton-derived exometabolites could supply up to 5% of the daily carbon quota of the dominant heterotrophic bacterium SAR11 in the surface ocean. Substantial variations in exometabolite identity and concentration across phytoplankton taxa underscore taxonomic diversity as a key driver in the supply and composition of labile DOC. This taxonomic variation predicts geographic and seasonal differences in the distribution of marine dissolved metabolites that underpin the cycling of labile DOC back to CO2. Overall, our work suggests that phytoplankton exometabolites are key chemical currencies that mediate significant carbon fluxes within the oceans carbon cycle. Significance StatementPhytoplankton exometabolites are key components of the marine labile dissolved organic carbon (DOC) pool, which drives major a fraction of the oceanic carbon flux. Yet, their composition and flux are poorly constrained. Leveraging new methods, we quantified amine- and alcohol-containing exometabolites in diverse phytoplankton and found they varied taxonomically. These exometabolites accounted for up to 23.4% of excreted DOC, potentially supporting a sizable fraction of the global heterotrophic growth. Integrating our results with ecological models suggest that exometabolite composition varies geographically and seasonally in response to changing phytoplankton community structures. Our findings illuminate the long-standing "black box" of labile DOC and link taxonomic diversity to the chemical currencies underpinning the microbe-metabolite networks at the heart of the marine carbon cycle.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Selective enrichment of high-affinity clade II N2O-reducers in a mixed culture 96%
- Meta-omics reveals role of photosynthesis in Microbially Induced Carbonate Precipitation at a CO2-rich Geyser 95%
- Syndiniales parasites drive species networks and are a biomarker for carbon export in the oligotrophic ocean 95%
Similar papers in this journal
- Marine community metabolomes carry fingerprints of phytoplankton community composition 98%
- Anaerobic sulfur oxidation underlies adaptation of a chemosynthetic symbiont to oxic-anoxic interfaces 96%
- Picophytoplankton Implicated in Productivity and Biogeochemistry in the North Pacific Transition Zone 96%
Similar papers in this journal
Similar papers in this journal
- Testing the priming effect in the deep ocean: are microbes too starved to consume recalcitrant organic carbon? 97%
- Environmental and taxonomic drivers of bacterial extracellular vesicle production in marine ecosystems 97%
- Diel cycle of lanthanide-dependent methylotrophy by TMED127/Methylaequorales bacteria in oligotrophic surface seawater 97%
Similar papers in this journal
- Gulf of Mexico blue hole harbors high levels of novel microbial lineages 96%
- Phototroph-heterotroph interactions during growth and long-term starvation across Prochlorococcus and Alteromonas diversity 95%
- Enrichment and physiological characterization of a novel comammox Nitrospira indicates ammonium inhibition of complete nitrification 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.