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April 16, 2026ISME Communications0 citationsOpen Access

Long-term heating differently impacts diversity and seasonal dynamics of prokaryotes and micro-eukaryotes in Baltic Sea coastal biofilm communities

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ISIda Krogsgaard SvendsenIRIryna RulaENEmelie Nilsson

Key Points

  • This research aims to understand how long-term thermal heating affects the diversity and seasonal dynamics of coastal biofilm communities in the Baltic Sea.
  • Conducted seasonal sampling in a heated bay, an unaffected control bay, and along a temperature gradient.
  • Assessed diversity, composition, and community dynamics of biofilm organisms, specifically focusing on prokaryotes and micro-eukaryotes.
  • Compared environmental conditions such as temperature and water chemistry across different sites.
  • Biofilms in the heated bay showed less seasonal variability and higher similarity compared to the control bay.
  • Prokaryotes displayed greater spatial heterogeneity and seasonal dynamics than micro-eukaryotes.
  • Alpha diversity of prokaryotes declined with increasing temperature, while heterotrophic micro-eukaryotes became more prevalent at higher temperatures.

Abstract

Abstract Warming temperatures, heat waves, and altered conditions associated with climate change affect biodiversity and ecological processes across environments, with coastal zones being particularly vulnerable. Biofilm-forming organisms in shallow coastal areas are taxonomically diverse and include bacteria, fungi, and algae that contribute to energy and nutrient cycling along with providing habitats and food for species at the base of the food web. To understand how biofilm-forming organisms respond differently to spatiotemporally changing environmental conditions, seasonal sampling was performed in a Baltic Sea bay that has undergone 50 years of thermal heating, an unaffected nearby control bay, and a temperature gradient along an exposed coastline between the bays. The diversity, composition, and seasonal dynamics of the biofilm communities differed between the three environments largely due to temperature and water chemistry, with biofilms in the heated bay being more similar across seasons compared with the control bay and the gradient, and with prokaryotes exhibiting stronger spatial heterogeneity and seasonal dynamics compared to micro-eukaryotes. In the gradient, the dominating taxonomic groups were distinct, community composition was primarily influenced by seasonal turnover and wave exposure, and alpha diversity of prokaryotes decreased with increasing temperature. Seasonal shifts in the composition of micro-eukaryotic heterotrophs, phototrophs, and mixotrophs differed between environments, with heterotrophs being more dominant at higher temperatures. In conclusion, these contrasting responses indicated that climate warming may disproportionately impact different components of coastal biofilm communities, potentially decoupling key ecological processes and reducing community resilience in Baltic Sea coastal habitats.

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Cite This Study

Svendsen et al. (2026) studied this question.

synapsesocial.com/papers/69e07c972f7e8953b7cbdcaehttps://doi.org/10.1093/ismeco/ycag101
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