Solar system exploration and eventual colonization efforts are constrained by limits on the mass of material that can embark from Earth. Thus, creative use of the resources available in situ could reduce mission costs and extend the scope of such activities. To that end, we are developing synthetic fungal strains to produce specialized materials from the resources found throughout the solar system. A primary goal is to develop a suite of Saccharomyces cerevisiae strains to serve as generic production chassis for synthetic metabolic pathways. These strains must perform consistently upon challenge by unique conditions including exposure to microgravity, cosmic radiation, the rigors of launch and re-entry, and long-term stasis. Presently, we a...
Despite the increasing interest in using microbial‐based technologies to support human space explora...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
The whole-genome sequences of eight fungal strains that were selected for exposure to microgravity a...
Fungi have been companions of mankind for millennia. Mushrooms inspired our eating culture, and yeas...
Due to their extraordinary genetic and phenotypic plasticity, yeast and yeast-like fungi have been a...
Filamentous fungi are dual organisms that can be both useful for mankind and threatening to human ha...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
2019-05-10Fungi are ubiquitous in nature. This is partially due to their phenotypic plasticity and a...
Human exploration off planet is severely limited by the cost of launching materials into space and b...
2019-04-30Filamentous fungi are dual organisms that can be both useful for mankind and threatening t...
The yeast, Saccharomyces cerevisiae, is a eukaryote and model organism that can be used to study how...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Despite the increasing interest in using microbial-based technologies to support human space explora...
Despite the increasing interest in using microbial-based technologies to support human space explora...
Despite the increasing interest in using microbial‑based technologies to support human space explora...
Despite the increasing interest in using microbial‐based technologies to support human space explora...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
The whole-genome sequences of eight fungal strains that were selected for exposure to microgravity a...
Fungi have been companions of mankind for millennia. Mushrooms inspired our eating culture, and yeas...
Due to their extraordinary genetic and phenotypic plasticity, yeast and yeast-like fungi have been a...
Filamentous fungi are dual organisms that can be both useful for mankind and threatening to human ha...
Spaceflight imposes multiple stresses on biological systems resulting in genome-scale adaptations. U...
2019-05-10Fungi are ubiquitous in nature. This is partially due to their phenotypic plasticity and a...
Human exploration off planet is severely limited by the cost of launching materials into space and b...
2019-04-30Filamentous fungi are dual organisms that can be both useful for mankind and threatening t...
The yeast, Saccharomyces cerevisiae, is a eukaryote and model organism that can be used to study how...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
Despite the increasing interest in using microbial-based technologies to support human space explora...
Despite the increasing interest in using microbial-based technologies to support human space explora...
Despite the increasing interest in using microbial‑based technologies to support human space explora...
Despite the increasing interest in using microbial‐based technologies to support human space explora...
Knowledge of simulated microgravity (SMG)-induced changes in the pathogenicity of microorganisms is ...
The whole-genome sequences of eight fungal strains that were selected for exposure to microgravity a...