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首页> 外文期刊>Frontiers in Microbiology >Cryptoendolithic Antarctic Black Fungus Cryomyces antarcticus Irradiated with Accelerated Helium Ions: Survival and Metabolic Activity, DNA and Ultrastructural Damage
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Cryptoendolithic Antarctic Black Fungus Cryomyces antarcticus Irradiated with Accelerated Helium Ions: Survival and Metabolic Activity, DNA and Ultrastructural Damage

机译:加速氦离子辐照的隐鳞片南极黑木耳南极低温:存活和代谢活性,DNA和超微结构损伤

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Space represents an extremely harmful environment for life and survival of terrestrial organisms. In the last decades, a considerable deal of attention was paid to characterize the effects of spaceflight relevant radiation on various model organisms. The aim of this study was to test the survival capacity of the cryptoendolithic black fungus Cryomyces antarcticus CCFEE 515 to space relevant radiation, to outline its endurance to space conditions. In the frame of an international radiation campaign, dried fungal colonies were irradiated with accelerated Helium ion (150 MeV, LET 2.2 keV/μm), up to a final dose of 1,000 Gy, as one of the space-relevant ionizing radiation. Results showed that the fungus maintained high survival and metabolic activity with no detectable DNA and ultrastructural damage, even after the highest dose irradiation. These data give clues on the resistance of life toward space ionizing radiation in general and on the resistance and responses of eukaryotic cells in particular.
机译:太空代表着对陆地生物的生存和生存极为有害的环境。在过去的几十年中,人们非常关注表征航天相关辐射对各种模型生物的影响。这项研究的目的是测试隐岩质黑木耳南极低温细菌CCFEE 515对空间相关辐射的存活能力,以概述其对空间条件的耐受性。在国际辐射运动的框架中,干燥的真菌菌落用加速氦离子(150 MeV / n,LET 2.2 keV /μm)辐照,最终剂量为1,000 Gy,是与空间有关的电离辐射之一。结果表明,即使在最高剂量的照射下,真菌仍保持高存活率和代谢活性,没有可检测的DNA和超微结构破坏。这些数据提供了一般情况下生命对空间电离辐射的抵抗力,尤其是真核细胞的抵抗力和反应的线索。

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