Significant technical challenges have limited the study of extremophile cell biology. Here we describe a system for imaging samples at 75°C using high numerical aperture, oil-immersion lenses. With this system we observed and quantified the dynamics of cell division in the model thermoacidophilic crenarchaeon Sulfolobus acidocaldarius with unprecedented resolution. In addition, we observed previously undescribed dynamic cell shape changes, cell motility, and cell-cell interactions, shedding significant new light on the high-temperature lifestyle of this organism.</p
Imaging is a method of choice to investigate the complex spatio-temporal cellular dynamics and the s...
The third domain of life, Archaea is one of the three main evolutionary lineages together with the B...
Sulfolobus islandicus is a thermophilic, single-celled organism of the domain Archaea. This organism...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Live-cell imaging has revolutionized our understanding of dynamic cellular processes in bacteria and...
The complex lifestyle of the social amoebae Dictyostelium discoideum makes it a valuable model for t...
Motility of microorganisms is understudied but provides useful insights into their behavior. Organis...
Archaea are key players in many critical ecological processes. In comparison to eukaryotes and bacte...
True physiological imaging of subcellular dynamics requires studying cells within their parent organ...
Imaging is a method of choice to investigate the complex spatio-temporal cellular dynamics and the s...
The third domain of life, Archaea is one of the three main evolutionary lineages together with the B...
Sulfolobus islandicus is a thermophilic, single-celled organism of the domain Archaea. This organism...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Significant technical challenges have limited the study of extremophile cell biology. Here we descri...
Live-cell imaging has revolutionized our understanding of dynamic cellular processes in bacteria and...
The complex lifestyle of the social amoebae Dictyostelium discoideum makes it a valuable model for t...
Motility of microorganisms is understudied but provides useful insights into their behavior. Organis...
Archaea are key players in many critical ecological processes. In comparison to eukaryotes and bacte...
True physiological imaging of subcellular dynamics requires studying cells within their parent organ...
Imaging is a method of choice to investigate the complex spatio-temporal cellular dynamics and the s...
The third domain of life, Archaea is one of the three main evolutionary lineages together with the B...
Sulfolobus islandicus is a thermophilic, single-celled organism of the domain Archaea. This organism...