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Responses of the Black Fungus Cryomyces antarcticus to Simulated Mars and Space Conditions on Rock Analogs

机译:黑色真菌的反应南极对岩石类似物模拟火星和空间条件的反应

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The BIOMEX (BIOlogy and Mars Experiment) is part of the European Space Agency (ESA) space mission EXPOSE-R2 in Low-Earth Orbit, devoted to exposing microorganisms for 1.5 years to space and simulated Mars conditions on the International Space Station. In preparing this mission, dried colonies of the Antarctic cryptoendolithic black fungus Cryomyces antarcticus CCFEE 515, grown on martian and lunar analog regolith pellets, were subjected to several ground-based preflight tests, Experiment Verification Tests, and Science Verification Tests (SVTs) that were performed to verify (i) the resistance of our model organism to space stressors when grown on extraterrestrial rock analogs and (ii) the possibility of detecting biomolecules as potential biosignatures. Here, the results of the SVTs, the last set of experiments, which were performed in ultraviolet radiation combined with simulated space vacuum or simulated martian conditions, are reported. The results demonstrate that C. antarcticus was able to tolerate the conditions of the SVT experiment, regardless of the substratum in which it was grown. DNA maintained high integrity after treatments and was confirmed as a possible biosignature; melanin, which was chosen to be a target for biosignature detection, was unambiguously detected by Raman spectroscopy.
机译:生物综菌(生物学和火星实验)是欧洲空间机构(ESA)太空特派团暴露R2的一部分,低地轨道,致力于将微生物暴露于1.5岁到空间和模拟国际空间站的火星条件。在制定这项任务时,南极密码胆石黑色真菌的干菌落Crocomyces antarcticus CCFee 515,在火星和月球模拟颗粒颗粒上生长,进行了几种基于地面的预检测试,实验验证测试和科学验证测试(SVTS)在在外星岩石类似物生长时验证(i)模型生物对空间压力源的抵抗力,(ii)将生物分子检测为潜在的生物循散。这里,报道了SVT的结果,在紫外线辐射中进行的最后一组实验,与模拟空间真空或模拟的火星条件联合。结果表明,无论其生长的外部,C. antarcticus是否能够耐受SVT实验的条件。 DNA治疗后保持高完整性,并确认为可能的生物吻合;由拉曼光谱法明确地检测被选择为生物关键检测靶标的黑色素。

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