<div><p>This study presents the first global transcriptional profiling and phenotypic characterization of the major human opportunistic fungal pathogen, <i>Candida albicans</i>, grown in spaceflight conditions. Microarray analysis revealed that <i>C. albicans</i> subjected to short-term spaceflight culture differentially regulated 452 genes compared to synchronous ground controls, which represented 8.3% of the analyzed ORFs. Spaceflight-cultured <i>C. albicans</i>–induced genes involved in cell aggregation (similar to flocculation), which was validated by microscopic and flow cytometry analysis. We also observed enhanced random budding of spaceflight-cultured cells as opposed to bipolar budding patterns for ground samples, in accordance wit...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Filamentous fungi are dual organisms that can be both useful for mankind and threatening to human ha...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
abstract: This study presents the first global transcriptional profiling and phenotypic characteriza...
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 ...
This report was designed to compare spaceflight-induced cellular and physiological adaptations of Ca...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
<p>*P < 0.05,</p><p>**p < 0.01</p><p>Gene expression was normalized using the average of 4 housekeep...
Abstract The low-shear microgravity environment, modeled by rotating suspension culture bioreactors...
Spaceflight is a unique environment with profound effects on biological systems including tissue red...
Spaceflight is a unique environment with profound effects on biological systems including tissue red...
2019-04-30Filamentous fungi are dual organisms that can be both useful for mankind and threatening t...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Filamentous fungi are dual organisms that can be both useful for mankind and threatening to human ha...
This study investigates the effects of microgravity on colony growth and the morphological transitio...
abstract: This study presents the first global transcriptional profiling and phenotypic characteriza...
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 ...
This report was designed to compare spaceflight-induced cellular and physiological adaptations of Ca...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
<p>*P < 0.05,</p><p>**p < 0.01</p><p>Gene expression was normalized using the average of 4 housekeep...
Abstract The low-shear microgravity environment, modeled by rotating suspension culture bioreactors...
Spaceflight is a unique environment with profound effects on biological systems including tissue red...
Spaceflight is a unique environment with profound effects on biological systems including tissue red...
2019-04-30Filamentous fungi are dual organisms that can be both useful for mankind and threatening t...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Due to immense phenotypic plasticity and adaptability, Aspergillus niger is a cosmopolitan fungus th...
Filamentous fungi are dual organisms that can be both useful for mankind and threatening to human ha...
This study investigates the effects of microgravity on colony growth and the morphological transitio...