Dimethylsulfoniopropionate metabolism shapes microbial ecology and physiological adaptation during the austral winter in Southern Ocean sea ice and seawater
Метаболизм диметилсульфониопропионата определяет микробную экологию и физиологическую адаптацию в течение австральной зимы в морском льду и морской воде Южного океана
2026-06-18
SCID: 54.1/2py8ckmy
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DMSP biosynthesis genesDMSP catabolism genesDimethylsulfoniopropionate metabolismMicrobial stress toleranceSouthern Ocean sea ice
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Abstract (AI)
Dimethylsulfoniopropionate (DMSP) is a highly abundant marine organosulfur compound, with important roles in stress protection and climate-cooling gases production. Polar regions, particularly seawater and sea ice interfaces, are critical yet understudied DMSP cycling hotspots. Here, we reveal up to 38-fold higher DMSP concentrations in Southern Ocean sea ice versus seawaters, identifying sea ice as a concentrated reservoir of DMSP with implications for microbial stress tolerance and sulfur recycling. Eukaryotic algae harboring DSYB and DSYE genes were predicted to dominate DMSP production, but diverse and previously unidentified bacterial producers were also detected. This elevated abundance of algal biosynthetic genes likely underpins the higher DMSP concentrations in sea ice. Notably, DMSP catabolism, particularly the dmdA demethylase and dddD and dddK lyase genes, were more abundant than biosynthesis genes. Taken together, these findings reveal the widespread metabolism for DMSP cycling and underscore a dynamic reservoir and transformation hub influencing polar climate-cooling sulfur fluxes.
Key Findings
1
DMSP catabolism genes, including dmdA, dddD, and dddK, are more abundant than biosynthesis genes, indicating intensive microbial transformation.
2
Eukaryotic algae carrying DSYB and DSYE genes are predicted to dominate DMSP production, while diverse previously unidentified bacterial producers also contribute.
3
Higher abundance of algal DMSP biosynthetic genes likely explains the elevated DMSP concentrations in sea ice.
4
Southern Ocean sea ice contains up to 38-fold higher DMSP concentrations than seawater, identifying it as a concentrated DMSP reservoir.
5
Widespread DMSP metabolism makes sea ice and seawater interfaces dynamic hubs for microbial adaptation, sulfur recycling, and polar climate-cooling sulfur fluxes.
Research Object
DMSP cycling in Southern Ocean sea ice and seawater microbial communities during the austral winter
Research Subject
DMSP production, catabolism, spatial enrichment, and associated microbial ecological and physiological adaptations influencing polar sulfur fluxes
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2026-06-18
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