This study investigates the effects of microgravity on colony growth and the morphological transition from single cells to short invasive filaments in the model eukaryotic organism Saccharomyces cerevisiae. Two-dimensional spreading of the yeast colonies grown on semi-solid agar medium was reduced under microgravity in the Sigma 1278b laboratory strain but not in the CMBSESA1 industrial strain. This was supported by the Sigma 1278b proteome map under microgravity conditions, which revealed upregulation of proteins linked to anaerobic conditions. The Sigma 1278b strain showed a reduced invasive growth in the center of the yeast colony. Bud scar distribution was slightly affected, with a switch toward more random budding. Together, microgravi...
Yeast Saccharomyces cerevisiae as an unicellular organism is one of the best-studied experimental or...
The effects of hyperbaric gases on the cell cycle of Saccharomyces cerevisiae were studied in batch ...
A major stressor in the space environment is microgravity. Microgravity has profound effects on biol...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Objective: This study was conducted to examine the effects of the microgravity of space on yeast gro...
The yeast, Saccharomyces cerevisiae, is a eukaryote and model organism that can be used to study how...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
Abstract The low-shear microgravity environment, modeled by rotating suspension culture bioreactors...
This report was designed to compare spaceflight-induced cellular and physiological adaptations of Ca...
Fungi are able to colonize indoor-closed habitats such as space stations, in a variety of solid and ...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
During body invasion, C.albicans change their morphology from yeast to filamentous, but the environm...
Yeast Saccharomyces cerevisiae as an unicellular organism is one of the best-studied experimental or...
The effects of hyperbaric gases on the cell cycle of Saccharomyces cerevisiae were studied in batch ...
A major stressor in the space environment is microgravity. Microgravity has profound effects on biol...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Objective: This study was conducted to examine the effects of the microgravity of space on yeast gro...
The yeast, Saccharomyces cerevisiae, is a eukaryote and model organism that can be used to study how...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
Abstract The low-shear microgravity environment, modeled by rotating suspension culture bioreactors...
This report was designed to compare spaceflight-induced cellular and physiological adaptations of Ca...
Fungi are able to colonize indoor-closed habitats such as space stations, in a variety of solid and ...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
During body invasion, C.albicans change their morphology from yeast to filamentous, but the environm...
Yeast Saccharomyces cerevisiae as an unicellular organism is one of the best-studied experimental or...
The effects of hyperbaric gases on the cell cycle of Saccharomyces cerevisiae were studied in batch ...
A major stressor in the space environment is microgravity. Microgravity has profound effects on biol...