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暴露实验平台-2 号设施(EXPOSE-R2)外国际空间站上进行的太空飞行后地衣的活力:生物学和火星实验的结果。

Lichen Vitality After a Space Flight on Board the EXPOSE-R2 Facility Outside the International Space Station: Results of the Biology and Mars Experiment.

机构信息

Departamentos de Observación de la Tierra, Instituto Nacional de Técnica Aeroespacial (INTA), Madrid, Spain.

Departamentos de Sistemas de Defensa NBQ y Materiales Energéticos, Instituto Nacional de Técnica Aeroespacial (INTA), Madrid, Spain.

出版信息

Astrobiology. 2020 May;20(5):583-600. doi: 10.1089/ast.2018.1959.

Abstract

As part of the Biology and Mars Experiment (BIOMEX; ILSRA 2009-0834), samples of the lichen were placed on the exposure platform EXPOSE-R2, on the International Space Station (ISS) and exposed to space and to a Mars-simulated environment for 18 months (2014-2016) to study: (1) resistance to space and Mars-like conditions and (2) biomarkers for use in future space missions (Exo-Mars). When the experiment returned (June 2016), initial analysis showed rapid recovery of photosystem II activity in the samples exposed exclusively to space vacuum and a Mars-like atmosphere. Significantly reduced recovery levels were observed in Sun-exposed samples, and electron and fluorescence microscopy (transmission electron microscope and field emission scanning electron microscope) data indicated that this was attributable to the combined effects of space radiation and space vacuum, as unirradiated samples exhibited less marked morphological changes compared with Sun-exposed samples. Polymerase chain reaction analyses confirmed that there was DNA damage in lichen exposed to harsh space and Mars-like environmental conditions, with ultraviolet radiation combined with space vacuum causing the most damage. These findings contribute to the characterization of space- and Mars-resistant organisms that are relevant to Mars habitability.

摘要

作为生物学和火星实验(BIOMEX;ILSRA 2009-0834)的一部分,将地衣样本放置在国际空间站(ISS)的暴露平台 EXPOSE-R2 上,暴露于太空和火星模拟环境中 18 个月(2014-2016 年),以研究:(1)对太空和火星条件的抵抗力;(2)用于未来太空任务(Exo-Mars)的生物标志物。当实验返回(2016 年 6 月)时,初步分析表明,仅暴露于太空真空和火星模拟大气中的样本中光合作用系统 II 的活性迅速恢复。在阳光暴露的样本中观察到恢复水平显著降低,电子和荧光显微镜(透射电子显微镜和场发射扫描电子显微镜)数据表明,这归因于空间辐射和太空真空的综合影响,因为与阳光暴露的样本相比,未辐照的样本表现出的形态变化不那么明显。聚合酶链反应分析证实,暴露于恶劣的太空和火星环境条件下的地衣存在 DNA 损伤,紫外线辐射与太空真空相结合会造成最大的损伤。这些发现有助于对与火星可居住性相关的具有太空和火星抵抗力的生物体进行特征描述。

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