Outer space is a challenging environment for all forms of life, and dormant spores of bacteria have been frequently used to study the survival of terrestrial life in a space journey. Previous work showed that outer space vacuum alone can kill bacterial spores. However, the responses and mechanisms of resistance of individual spores to space vacuum are unclear. Here, we examined spores’ molecular changes under simulated space vacuum (~10⁻⁵ Pa) using micro-Raman spectroscopy and found that this vacuum did not cause significant denaturation of spore protein. Then, live-cell microscopy was developed to investigate the temporal events during germination, outgrowth, and growth of individual Bacillus spores. The results showed that after expo...
The ability to form endospores allows certain Gram-positive bacteria (e.g. Bacillus subtilis) to cha...
The complex space radiation environment, which includes Galactic Cosmic Rays (GCR) composed of high-...
Abstract. Spores of Bacillus subtilis were exposed to space in the BIOPAN facility of the European S...
Outer space is a challenging environment for all forms of life, and dormant spores of bacteria have ...
Introduction: Spores of Bacillus subtilis have been used extensively as biological indicators for in...
The vast, cold, and radiation-filled conditions of outer space present an environmental challenge fo...
Microorganisms able to tolerate environmental extremes, or extremophiles, are ideal candidates to ex...
Spore-forming bacteria are of particular concern in the context of planetary protection because thei...
Space radiation, including Galactic Cosmic Rays (GCR) and Solar Particle Events (SPE), represents a...
To prevent forward contamination and maintain the scientific integrity of future life detection miss...
Increasing efforts to find and study habitable conditions and the possibility of life on extraterres...
To prevent forward contamination and maintain the scientific integrity of future life-detection miss...
The black fungi Cryomyces antarcticus and Cryomyces minteri are highly melanized and are resilient t...
Spore-forming bacteria are of particular concern in the context of planetary protection because thei...
Submarine hydrothermal vents are inhabited by a variety of microorganisms capable of tolerating envi...
The ability to form endospores allows certain Gram-positive bacteria (e.g. Bacillus subtilis) to cha...
The complex space radiation environment, which includes Galactic Cosmic Rays (GCR) composed of high-...
Abstract. Spores of Bacillus subtilis were exposed to space in the BIOPAN facility of the European S...
Outer space is a challenging environment for all forms of life, and dormant spores of bacteria have ...
Introduction: Spores of Bacillus subtilis have been used extensively as biological indicators for in...
The vast, cold, and radiation-filled conditions of outer space present an environmental challenge fo...
Microorganisms able to tolerate environmental extremes, or extremophiles, are ideal candidates to ex...
Spore-forming bacteria are of particular concern in the context of planetary protection because thei...
Space radiation, including Galactic Cosmic Rays (GCR) and Solar Particle Events (SPE), represents a...
To prevent forward contamination and maintain the scientific integrity of future life detection miss...
Increasing efforts to find and study habitable conditions and the possibility of life on extraterres...
To prevent forward contamination and maintain the scientific integrity of future life-detection miss...
The black fungi Cryomyces antarcticus and Cryomyces minteri are highly melanized and are resilient t...
Spore-forming bacteria are of particular concern in the context of planetary protection because thei...
Submarine hydrothermal vents are inhabited by a variety of microorganisms capable of tolerating envi...
The ability to form endospores allows certain Gram-positive bacteria (e.g. Bacillus subtilis) to cha...
The complex space radiation environment, which includes Galactic Cosmic Rays (GCR) composed of high-...
Abstract. Spores of Bacillus subtilis were exposed to space in the BIOPAN facility of the European S...