Related Experiment Video
Updated: Jan 13, 2026

Efficient Polyethylene Glycol PEG Mediated Transformation of the Moss Physcomitrella patens
Published on: April 19, 2011
Extreme environmental tolerance and space survivability of the moss, Physcomitrium patens
Chang-Hyun Maeng1,2, Yuji Hiwatashi3, Keita Nakamura4
1Graduate School of Life Science, Hokkaido University, Sapporo, Japan.
Abstract:
Climate change highlights the importance of understanding life's survival limits for addressing global challenges and supporting future human habitation beyond Earth. Plants, as photosynthetic organisms, play a vital role in sustaining life. Bryophytes, such as mosses, show notable extremotolerance, but despite studies on environmental responses in the model moss Physcomitrium patens, its survival under extreme conditions in space remains unclear. We tested protonemata, brood cells, and spores encased in sporangium under simulated space environments, identifying spores as the most resilient, and subsequently exposed them to the space environment outside the International Space Station. After 9 months in space, over 80% of the spores survived, retaining their ability to germinate. These results demonstrate the remarkable resilience of P. patens spores in space and reveal the potential of terrestrial plants to endure extreme environments, providing insight into bryophyte adaptation and offering a foundation for future applications in space exploration and extraterrestrial habitats.
More Related Videos
Related Concept Videos
Endospores and Sporulation
Responses to Salt Stress
Responses to Heat and Cold Stress
Factors Influencing Microbial Growth: Temperature
Carbon-dioxide Fixation
Adaptations that Reduce Water Loss

