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Integrity of the DNA and Cellular Ultrastructure of Cryptoendolithic Fungi in Space or Mars Conditions: A 1.5-Year Study at the International Space Station

机译:在空间或火星条件下的DNA和细胞超微结构的直接性和细胞超微结构:在国际空间站的1.5年的研究

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摘要

The black fungi Cryomyces antarcticus and Cryomyces minteri are highly melanized and are resilient to cold, ultra-violet, ionizing radiation and other extreme conditions. These microorganisms were isolated from cryptoendolithic microbial communities in the McMurdo Dry Valleys (Antarctica) and studied in Low Earth Orbit (LEO), using the EXPOSE-E facility on the International Space Station (ISS). Previously, it was demonstrated that C. antarcticus and C. minteri survive the hostile conditions of space (vacuum, temperature fluctuations, and the full spectrum of extraterrestrial solar electromagnetic radiation), as well as Mars conditions that were simulated in space for a 1.5-year period. Here, we qualitatively and quantitatively characterize damage to DNA and cellular ultrastructure in desiccated cells of these two species, within the frame of the same experiment. The DNA and cells of C. antarcticus exhibited a higher resistance than those of C. minteri. This is presumably attributable to the thicker (melanized) cell wall of the former. Generally, DNA was readily detected (by PCR) regardless of exposure conditions or fungal species, but the C. minteri DNA had been more-extensively mutated. We discuss the implications for using DNA, when properly shielded, as a biosignature of recently extinct or extant life.
机译:黑色真菌冷冻酵母和冷冻酵母Minteri是高度黑色的,并且对冷,紫外线,电离辐射和其他极端条件具有弹性。这些微生物在McMurdo Drant Valleys(南极洲)中从密码内微生物群落中分离,并在低地球轨道(Leo)中使用国际空间站(ISS)的曝光E设施研究。以前,证明了C. antarcticus和C. Minteri在空间(真空,温度波动和外星广播的全部光谱)的敌对条件下,以及在空间中模拟的火星条件为1.5-年期间。在这里,我们在同一实验的框架内定性和定量地表征DNA和细胞超微结构的损伤和细胞超微结构中的干燥细胞。 C. antarcticus的DNA和细胞表现出比C. minteri的耐药更高的耐药性。这可以归因于前者的较厚(黑色化)细胞壁。通常,无论暴露条件或真菌物种如何,易于检测DNA(通过PCR),但是C.Minteri DNA已经更广泛突变。我们讨论使用DNA在适当屏蔽时使用DNA的影响,作为最近灭绝或现存的生命的生物创新。

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