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Influence of salinity on dimethyl sulfide and methanethiol formation in estuarine sediments and its side effect on nitrous oxide emissions
Authors:C Magalh?es  P Salgado  R P Kiene  A A Bordalo
Institution:1. CIMAR/CIIMAR—Centre of Marine and Environmental Research, University of Porto, Rua dos Bragas, no 289, 4050-123, Porto, Portugal
2. Department of Marine Sciences, University of South Alabama, LSCB 25, Mobile, AL, 36688, USA
3. Dauphin Island Sea Lab, Dauphin Island, AL, 36528, USA
4. Laboratory of Hydrobiology, Institute of Biomedical Sciences, University of Porto (ICBAS-UP), Largo Prof. Abel Salazar no 2, 4099-003, Porto, Portugal
Abstract:We investigated the regulatory effect of salinity on the production of dimethylsulfide (DMS) and methanethiol (MeSH) in estuarine sediments and the potential interactions with the nitrous oxide (N2O) reductase step of the denitrification pathway. This was achieved by monitoring DMS, MeSH and N2O accumulation in sediment slurries retrieved from a temperate estuary (Ave, NW Portugal). Treatments were performed with and without amendments of potential sulfur gas precursors, DMSP (0–50?μM) or methionine (0–500?μM) at different salinities (0, 15 and 30?ppt). Experimental increases of salinity inhibited DMS accumulation under both oxic and anoxic incubation conditions, and the pattern was observed whether DMSP or methionine was added or not, i.e. lower salinities stimulated DMS net production. In contrast, MeSH tended to accumulate to higher concentrations in higher salinity treatments (15 and 30?ppt). Our results also suggest that while salinity had a direct influence on N2O accumulation, it also may modulated N2O production through its regulatory effect on the formation of MeSH, a compound previously shown to inhibit N2O reduction activity. Overall, our results suggest that changes in salinity may have an important regulatory role in net production of DMS, MeSH and N2O and their potential emissions to the atmosphere.
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