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太空探索中的极端微生物。

Extremophiles in Space Exploration.

作者信息

Kaur Jasvinder, Kaur Jaspreet, Nigam Aeshna

机构信息

Gargi College, University of Delhi, Siri Fort Road, New Delhi, 110 049 India.

Maitreyi College, University of Delhi, New Delhi, 110 021 India.

出版信息

Indian J Microbiol. 2024 Jun;64(2):418-428. doi: 10.1007/s12088-024-01297-4. Epub 2024 May 4.

Abstract

In the era of deep space exploration, extremophile research represents a key area of research w.r.t space survival. This review thus delves into the intriguing realm of 'Space and Astro Microbiology', providing insights into microbial survival, resilience, and behavioral adaptations in space-like environments. This discussion encompasses the modified behavior of extremophilic microorganisms, influencing virulence, stress resistance, and gene expression. It then shifts to recent studies on the International Space Station and simulated microgravity, revealing microbial responses that impact drug susceptibility, antibiotic resistance, and its commercial implications. The review then transitions into Astro microbiology, exploring the possibilities of interplanetary transit, lithopanspermia, and terraforming. Debates on life's origin and recent Martian meteorite discoveries are noted. We also discuss Proactive Inoculation Protocols for selecting adaptable microorganisms as terraforming pioneers. The discussion concludes with a note on microbes' role as bioengineers in bioregenerative life support systems, in recycling organic waste for sustainable space travel; and in promoting optimal plant growth to prepare Martian and lunar basalt. This piece emphasizes the transformative impact of microbes on the future of space exploration.

摘要

在深空探索时代,嗜极生物研究是关乎太空生存的关键研究领域。因此,本综述深入探讨了“太空与天体微生物学”这一引人入胜的领域,揭示了微生物在类太空环境中的生存、适应能力及行为适应性。此讨论涵盖了嗜极微生物行为的改变,包括对毒力、抗逆性和基因表达的影响。接着转向国际空间站及模拟微重力的最新研究,揭示了影响药物敏感性、抗生素耐药性及其商业影响的微生物反应。随后,综述进入天体微生物学领域,探讨了行星际运输、岩石宇宙泛种论和地球化改造的可能性。文中提及了关于生命起源的争论以及近期火星陨石的发现。我们还讨论了主动接种方案,以选择适应性强的微生物作为地球化改造的先驱。讨论最后指出微生物在生物再生生命支持系统中作为生物工程师的作用,包括回收有机废物以实现可持续太空旅行,以及促进植物最佳生长以改良火星和月球玄武岩。本文强调了微生物对太空探索未来的变革性影响。

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Extremophiles in Space Exploration.太空探索中的极端微生物。
Indian J Microbiol. 2024 Jun;64(2):418-428. doi: 10.1007/s12088-024-01297-4. Epub 2024 May 4.

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Editorial: Rising stars in space microbiology: 2022.社论:2022年太空微生物学领域的后起之秀
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Life (Basel). 2022 May 24;12(6):774. doi: 10.3390/life12060774.

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