4.6 Article

Seasonal Changes in Microbial Dissolved Organic Sulfur Transformations in Coastal Waters

期刊

MICROORGANISMS
卷 8, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/microorganisms8030337

关键词

dimethylsulfide; dimethylsulfoxide; bacteria; dissimilation to CO2; radiotracers; stable tracers; coastal variability

资金

  1. NERC [NE/L004151/1]
  2. Western Channel Observatory - UK Natural Environment Research Council through its National Capability Long-term Single Centre Science Programme, Climate Linked Atlantic Sector Science [NE/R015953/1]
  3. NERC [pml010002, NE/L006448/1] Funding Source: UKRI

向作者/读者索取更多资源

The marine trace gas dimethylsulfide (DMS) is the single most important biogenic source of atmospheric sulfur, accounting for up to 80% of global biogenic sulfur emissions. Approximately 300 million tons of DMS are produced annually, but the majority is degraded by microbes in seawater. The DMS precursor dimethylsulfoniopropionate (DMSP) and oxidation product dimethylsulphoxide (DMSO) are also important organic sulfur reservoirs. However, the marine sinks of dissolved DMSO remain unknown. We used a novel combination of stable and radiotracers to determine seasonal changes in multiple dissolved organic sulfur transformation rates to ascertain whether microbial uptake of dissolved DMSO was a significant loss pathway. Surface concentrations of DMS ranged from 0.5 to 17.0 nM with biological consumption rates between 2.4 and 40.8 nM.d(-1). DMS produced from the reduction of DMSO was not a significant process. Surface concentrations of total DMSO ranged from 2.3 to 102 nM with biological consumption of dissolved DMSO between 2.9 and 111 nM.d(-1). Comparisons between C-14(2)-DMSO assimilation and dissimilation rates suggest that the majority of dissolved DMSO was respired (>94%). Radiotracer microbial consumption rates suggest that dissimilation of dissolved DMSO to CO2 can be a significant loss pathway in coastal waters, illustrating the significance of bacteria in controlling organic sulfur seawater concentrations.

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