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Characterization of Viability of the Lichen Buellia frigida After 1.5 Years in Space on the International Space Station

机译:在国际空间站上太空历时1.5年后,地衣Buriga frigida的生存能力表征

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摘要

The lichen iBuellia frigida was exposed to space and simulated Mars analog conditions in the BIOlogy and Mars EXperiment (BIOMEX) project operated outside the International Space Station (ISS) for 1.5 years. To determine the effects of the low Earth orbit (LEO) conditions on the lichen symbionts, a LIVE/DEAD staining analysis test was performed. After return from the ISS, the lichen symbionts demonstrated mortality rates of up to 100% for the algal symbiont and up to 97.8% for the fungal symbiont. In contrast, the lichen symbiont controls exhibited mortality rates of 10.3% up to 31.9% for the algal symbiont and 14.5% for the fungal symbiont. The results performed in the BIOMEX Mars simulation experiment on the ISS indicate that the potential for survival and the resistance of the lichen iB. frigida to LEO conditions are very low. It is unlikely that Mars could be inhabited by this lichen, even for a limited amount of time, or even not habitable planet for the tested lichen symbionts.
机译:在国际空间站(ISS)外部开展的生物与火星实验(BIOMEX)项目中,地衣Buriga frigida暴露于太空并模拟了火星模拟条件,历时1.5年。为了确定低地球轨道(LEO)条件对地衣共生体的影响,进行了LIVE / DEAD染色分析测试。从国际空间站返回后,地衣共生体显示藻类共生体的死亡率高达100%,真菌共生体的死亡率高达97.8%。相反,地衣共生体对照的藻类共生体死亡率为10.3%,最高为31.9%,真菌共生体死亡率为14.5%。在国际空间站的BIOMEX火星模拟实验中执行的结果表明,地衣B的生存潜力和抗药性。 frigida到LEO的条件非常低。即使经过有限的时间,火星也不太可能被这种地衣所居住,对于被测试的地衣共生体来说,火星也不可能被居住。

著录项

  • 来源
    《Astrobiology》 |2019年第2期|233-241|共9页
  • 作者单位

    Institute of Botany, Heinrich Heine University;

    Institute of Botany, Heinrich Heine University;

    European Space Research and Technology Centre (ESTEC), European Space Agency (ESA);

    Research Group, Astrobiological Laboratories, Institute of Planetary Research, Management and Infrastructure, German Aerospace Center (DLR);

    Institute of Botany, Heinrich Heine University;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Astrobiology; BIOMEX; Lichen; Space conditions; Mars analog conditions;

    机译:天体生物学BIOMEX地衣空间条件火星模拟条件;

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