Showing results (21-30 of 124) with videos related to
Sort By:
Pageof 13
Scientific Reports|September 28, 2018
Meta-analysis of data from spaceflight transcriptome experiments does not support the idea of a common bacterial "spaceflight response"Michael D Morrison, Wayne L NicholsonAstrobiology|August 5, 2005
Bacillus subtilis spore survival and expression of germination-induced bioluminescence after prolonged incubation under simulated Mars atmospheric pressure and composition: implications for planetary protection and lithopanspermiaWayne L Nicholson, Andrew C SchuergerAstrobiology|November 22, 2016
Twenty Species of Hypobarophilic Bacteria Recovered from Diverse Soils Exhibit Growth under Simulated Martian Conditions at 0.7 kPaAndrew C Schuerger, Wayne L NicholsonFrontiers in Microbiology|July 23, 2016
Cultivation of Staphylococcus epidermidis in the Human Spaceflight Environment Leads to Alterations in the Frequency and Spectrum of Spontaneous Rifampicin-Resistance Mutations in the rpoB GenePatricia Fajardo-Cavazos, Wayne L NicholsonAstrobiology|October 19, 2020
Comparisons of Transcriptome Profiles from <i>Bacillus subtilis</i> Cells Grown in Space versus High Aspect Ratio Vessel (HARV) Clinostats Reveal a Low Degree of ConcordanceMichael D Morrison, Wayne L NicholsonApplied and Environmental Microbiology|September 8, 2021
The Spectrum of Spontaneous Rifampin Resistance Mutations in the Bacillus subtilis <i>rpoB</i> Gene Depends on the Growth EnvironmentJoss D Leehan, Wayne L NicholsonAstrobiology|May 3, 2016
Twenty-Three Species of Hypobarophilic Bacteria Recovered from Diverse Ecosystems Exhibit Growth under Simulated Martian Conditions at 0.7 kPaAndrew C Schuerger, Wayne L NicholsonLife (Basel, Switzerland)|January 12, 2021
Mechanotransduction in Prokaryotes: A Possible Mechanism of Spaceflight AdaptationPatricia Fajardo-Cavazos, Wayne L NicholsonEnvironmental Microbiology|June 21, 2017
Experimental evolution of Bacillus subtilisDaniel R Zeigler, Wayne L NicholsonLife (Basel, Switzerland)|January 8, 2020
Nanosatellites for Biology in Space: In Situ Measurement of <i>Bacillus subtilis</i> Spore Germination and Growth after 6 Months in Low Earth Orbit on the <i>O/OREOS</i> MissionWayne L Nicholson, Antonio J RiccoPageof 13