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Misson, B.

Publications and source records attributed to Misson, B..

2 recordsLinked to original sources

Unveiling the control of N and P on DOM fate in a Mediterranean coastal environment

Dissolved organic matter (DOM) and heterotrophic prokaryotes (HP) are key players in the oceanic carbon cycle. Although several biotic and abiotic factors controlling DOM fates are known, the hierarchy of their respective influences is still debated. Two contrasting Mediterranean coastal sites were sampled: a harbour under strong continental and anthropogenic influence (T) and an open coastal area (G). Interestingly, similar dissolved organic carbon (DOC) concentrations were observed in both samples. However, they showed marked differences in dissolved inorganic nitrogen and organic phosphorus concentrations (60-fold and 80% higher value in T), as well as in DOM optical properties and molecular composition. Incubation experiments were performed to expose the HP communities of each site to dissolved substances from T and G for three weeks. DOC removal was similar (-10 %) regardless HP origin and dissolved substances characteristics. HP growth and their maximal abundance were higher (+ 300 %) with dissolved substances from T, regardless HP origins. This indicates different fates of DOC processed by microbial communities as a function of abiotic determinants. Higher HP growth was associated to elevated initial content and higher consumption of inorganic nitrogen, organic phosphorus, three fluorescent DOM components, nitrogen-containing molecules and carbohydrates. These results provide insights into the main drivers of marine DOM fate: at similar DOC concentrations and low inorganic P concentrations. We evience the preferential consumption of lignin-like compounds where theoretically more labile molecules were available, thus reinforcing the need of in depth molecular studies for a better understanding of DOM-microbes interactions in the ocean.

ecology↗

Hypervariable DOM properties in coastal NW Mediterranean Sea -Evidences of strong human influences and potential consequences for the heterotrophic base of planktonic food webs

Marine DOM plays a key role in the carbon cycle. Though there is growing interest for its chemical and ecological properties, its variability in the very heterogeneous coastal environment is poorly documented. In this study, we assessed the spatial and temporal variations in marine coastal DOM chemical properties and its potential to support the growth of the heterotrophic basis of the planktonic food-web. For that, we considered two NW Mediterranean coastal sampling stations under contrasted continental and human influences. From January to July 2022, DOC concentration demonstrated a progressive increasing trend in addition to marked spatial differences. DOM composition presented more variations in time than in space. These variations appeared related to a combination of direct freshwater inputs tracked by salinity variations, direct human contaminations tracked by concentrations in Cu and Pb, and phytoplanktonic production. An experimental approach was also used at each sampling date to evaluate DOM ability to support the growth of heterotrophic prokaryotes. Significantly higher growth was observed with DOM from a site under higher continental and human influences. Water temperature exerted a higher control on growth than DOM properties. Correlation analysis with DOM sources suggested the uncoupling of phytoplanktonic production and growth of heterotrophic prokaryotes, which appeared better supported by human contaminations and, to a lesser extent, freshwater inputs. Sediment resuspension in harbors and antifouling paints could represent two important sources of bioavailable resources, favoring fast heterotrophic growth and higher net production, respectively.

ecology↗