Influence of the community assemblage on sulfur distributions in the South China sea

Mar Environ Res. 2024 May:197:106481. doi: 10.1016/j.marenvres.2024.106481. Epub 2024 Apr 4.

Abstract

Marine distribution of dimethylsulfoniopropionate (DMSP) and its cleavage product dimethyl sulfide (DMS) is greatly affected by the community structures of bacteria, phytoplankton, and zooplankton. Spatial distributions of dissolved and particulate DMSP (DMSPd,p), and DMS were measured and their relationships with DMSP lyase activity (DLA), abundance of DMSP-consuming bacteria (DCB), and the community structures of phytoplankton, zooplankton, and bacteria were determined during summer in the South China Sea (SCS). The depth distributions of DMSPd,p exhibited a similar trend with Chl a, reaching their maxima in the mixing layer. The DMS concentration was positively correlated with DCB abundance and DLA, indicating that DCB and DMSP lyase had a significant effect on DMS production. High DMS concentrations in the horizontal distribution coincided with high DCB abundance and DLA and may be due to the rapid growth of phytoplankton resulting from the high dissolved inorganic nitrogen concentration brought by the cold vortices. Moreover, the highest copepod abundance at station G3 coincided with the highest DMS concentrations there among stations B4, F2, and G3. These results suggest that copepod may play an important role in DMS production. The bacterial SAR11 clade was positively correlated with DLA, indicating its significant contribution to DMSP degradation in the SCS. These findings contribute to the understanding of the effect of the community assemblage on DMSP/DMS distributions in the SCS dominated by mesoscale vortices.

Keywords: Bacteria; Dimethyl sulfide; Dimethylsulfoniopropionate; Mesoscale vortices; Phytoplankton; Zooplankton.

MeSH terms

  • Animals
  • Bacteria / metabolism
  • China
  • Phytoplankton
  • Seawater* / chemistry
  • Sulfides / metabolism
  • Sulfonium Compounds* / chemistry
  • Sulfonium Compounds* / metabolism
  • Sulfur / metabolism
  • Zooplankton / metabolism

Substances

  • Sulfur
  • dimethylpropiothetin
  • Sulfonium Compounds
  • dimethyl sulfide
  • Sulfides