Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is important for success of long-term spaceflight. In a previous study using the high aspect ratio vessel bioreactor, we showed that the yeast species Saccharomyces cerevisiae underwent a significant phenotypic response when grown in modeled microgravity, which was reflected in the analysis of gene expression profiles. In this study, we establish that Candida albicans responds to SMG in a similar fashion, demonstrating that there is a conserved response among yeast to this environmental stress. We also report that the growth of C. albicans in SMG results in a morphogenic switch that is consistent with enhanced pathogenicity. Specifically, we obs...
Fungi are able to colonize indoor-closed habitats such as space stations, in a variety of solid and ...
C. albicans is one of the commensal fungi living in the human intestinal tract in a harmless spore f...
During body invasion, C.albicans change their morphology from yeast to filamentous, but the environm...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
This report was designed to compare spaceflight-induced cellular and physiological adaptations of Ca...
abstract: This study presents the first global transcriptional profiling and phenotypic characteriza...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
<div><p>This study presents the first global transcriptional profiling and phenotypic characterizati...
Objective: This study was conducted to examine the effects of the microgravity of space on yeast gro...
Abstract The low-shear microgravity environment, modeled by rotating suspension culture bioreactors...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
The yeast, Saccharomyces cerevisiae, is a eukaryote and model organism that can be used to study how...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
Fungi are able to colonize indoor-closed habitats such as space stations, in a variety of solid and ...
C. albicans is one of the commensal fungi living in the human intestinal tract in a harmless spore f...
During body invasion, C.albicans change their morphology from yeast to filamentous, but the environm...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
This report was designed to compare spaceflight-induced cellular and physiological adaptations of Ca...
abstract: This study presents the first global transcriptional profiling and phenotypic characteriza...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
<div><p>This study presents the first global transcriptional profiling and phenotypic characterizati...
Objective: This study was conducted to examine the effects of the microgravity of space on yeast gro...
Abstract The low-shear microgravity environment, modeled by rotating suspension culture bioreactors...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
The yeast, Saccharomyces cerevisiae, is a eukaryote and model organism that can be used to study how...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
Fungi are able to colonize indoor-closed habitats such as space stations, in a variety of solid and ...
C. albicans is one of the commensal fungi living in the human intestinal tract in a harmless spore f...
During body invasion, C.albicans change their morphology from yeast to filamentous, but the environm...