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Mosses in Low Earth Orbit: Implications for the Limits of Life and the Habitability of Mars

机译:低地球轨道的苔藓:对生命极限的影响和火星的居住地

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As a part of the European Space Agency mission "EXPOSE-R2" on the International Space Station (ISS), the BIOMEX (Biology and Mars Experiment) experiment investigates the habitability of Mars and the limits of life. In preparation for the mission, experimental verification tests and scientific verification tests simulating different combinations of abiotic space- and Mars-like conditions were performed to analyze the resistance of a range of model organisms. The simulated abiotic space- and Mars-stressors were extreme temperatures, vacuum, and Mars-like surface ultraviolet (UV) irradiation in different atmospheres. We present for the first time simulated space exposure data of mosses using plantlets of the bryophyte genus Grimmia, which is adapted to high altitudinal extreme abiotic conditions at the Swiss Alps. Our preflight tests showed that severe UVR200-400nm irradiation with the maximal dose of 5 and 6.8 x 10(5) kJ center dot m(-2), respectively, was the only stressor with a negative impact on the vitality with a 37% (terrestrial atmosphere) or 36% reduction (space- and Mars-like atmospheres) in photosynthetic activity. With every exposure to UVR200-400nm 10(5) kJ center dot m(-2), the vitality of the bryophytes dropped by 6%. No effect was found, however, by any other stressor. As the mosses were still vital after doses of ultraviolet radiation (UVR) expected during the EXPOSE-R2 mission on ISS, we show that this earliest extant lineage of land plants is highly resistant to extreme abiotic conditions.
机译:作为国际空间站(ISS)的欧洲航天局的一部分“公平-R2”(ISS),生物综糖(生物学和火星实验)实验调查了火星的居住率和生命局限性。在准备任务时,进行模拟非生物空间和火星状况的不同组合的实验验证测试和科学验证试验,以分析一系列模型生物的抵抗力。模拟的非生物空间和火星应激源是极端温度,真空和不同大气中的紫外线紫外(UV)辐照。我们介绍了使用苔藓植物的苔藓植物的第一次模拟空间曝光数据,这适于瑞士阿尔卑斯山的高海拔极端非生物条件。我们的预检测试表明,严重的UVR200-400NM照射,分别具有5和6.8×10(5)kJ中心点M(-2)的最大剂量,是唯一的压力源,对具有37%的活力产生负面影响(陆地气氛)或光合活动中的36%减少(空间和火星和火星状气氛)。随着每次接触UVR200-400NM 10(5)KJ中心点M(-2),苔藓植物的活力下降了6%。然而,任何其他压力源都没有发现任何效果。作为苔藓仍然剂量对ISS的EXPOSE-R2任务期间预期的紫外线辐射(UVR)的后重要,我们表明,陆生植物的这个现存最早谱系是极端非生物条件高度抗性。

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