Literature DB >> 28206821

Simulated Space Radiation: Impact of Four Different Types of High-Dose Ionizing Radiation on the Lichen Xanthoria elegans.

Annette Brandt1, Joachim Meeßen1, Reiner U Jänicke2, Marina Raguse3, Sieglinde Ott1.   

Abstract

This study addresses the viability of the lichen Xanthoria elegans after high-dose ionizing irradiation in the frame of the STARLIFE campaign. The first set of experiments was intended to resemble several types of galactic cosmic radiation (GCR) as present beyond the magnetic shield of Earth. In the second set of experiments, γ radiation up to 113 kGy was applied to test the limit of lichen resistance to ionizing radiation. Entire thalli of Xanthoria elegans were irradiated in the anhydrobiotic state. After STARLIFE 1, the metabolic activity of both symbionts was quantified by live/dead staining with confocal laser scanning microscopy. The photosynthetic activity was measured after the respective irradiation to assess the ability of the symbiotic green algae to restore photosynthesis after irradiation. The STARLIFE campaign complements the results of the LIFE experiments at the EXPOSE-E facility on the International Space Station by testing the model organism Xanthoria elegans on its resistance to hazardous radiation that might be accumulated during long-term space exposure. In addition, the photosynthetic activity of metabolically active lichen was investigated after X-ray irradiation up to 100 Gy (3.3 Gy/min). Since previous astrobiological experiments were mostly performed with anhydrobiotic lichen, these experiments will broaden our knowledge on the correlation of physiological state and astrobiological stressors. Key Words: Astrobiology-Extremotolerance-Gamma rays-Ionizing radiation-Lichens-Viability. Astrobiology 17, 136-144.

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Year:  2017        PMID: 28206821     DOI: 10.1089/ast.2015.1455

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  2 in total

1.  Potential survival of the lichen Caloplaca flavovirescens under high helium-beam doses.

Authors:  K Miki; S Kawashima; Y Takahashi; S Yonemura
Journal:  Radiat Environ Biophys       Date:  2019-06-20       Impact factor: 1.925

2.  Insights into the Survival Capabilities of Cryomyces antarcticus Hydrated Colonies after Exposure to Fe Particle Radiation.

Authors:  Claudia Pacelli; Cassaro Alessia; Loke M Siong; Aureli Lorenzo; Ralf Moeller; Akira Fujimori; Shuryak Igor; Onofri Silvano
Journal:  J Fungi (Basel)       Date:  2021-06-22
  2 in total

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