Related Experiment Video
Updated: Jun 6, 2026

Adaptation at the Extremes of Life: Experimental Evolution with the Extremophile Archaeon Sulfolobus acidocaldarius
Published on: June 14, 2024
Crenarchaeal biofilm formation under extreme conditions
Andrea Koerdt1, Julia Gödeke, Jürgen Berger
1Molecular Biology of Archaea, Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.
Background:
Biofilm formation has been studied in much detail for a variety of bacterial species, as it plays a major role in the pathogenicity of bacteria. However, only limited information is available for the development of archaeal communities that are frequently found in many natural environments.
Methodology:
We have analyzed biofilm formation in three closely related hyperthermophilic crenarchaeotes: Sulfolobus acidocaldarius, S. solfataricus and S. tokodaii. We established a microtitre plate assay adapted to high temperatures to determine how pH and temperature influence biofilm formation in these organisms. Biofilm analysis by confocal laser scanning microscopy demonstrated that the three strains form very different communities ranging from simple carpet-like structures in S. solfataricus to high density tower-like structures in S. acidocaldarius in static systems. Lectin staining indicated that all three strains produced extracellular polysaccharides containing glucose, galactose, mannose and N-acetylglucosamine once biofilm formation was initiated. While flagella mutants had no phenotype in two days old static biofilms of S. solfataricus, a UV-induced pili deletion mutant showed decreased attachment of cells.
Conclusion:
The study gives first insights into formation and development of crenarchaeal biofilms in extreme environments.
Related Concept Videos
Diversity of Archaea III
Diversity of Archaea II
Microbial Mats
Deep Sea Microbial Ecology
Diversity of Archaea I
Biofilms

