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Microbial Existence in Controlled Habitats and Their Resistance to Space Conditions

机译:受控栖息地中微生物的存在及其对空间条件的抵抗力

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摘要

The National Research Council (NRC) has recently recognized the International Space Station (ISS) as uniquely suitable for furthering the study of microbial species in closed habitats. Answering the NRC’s call for the study, in particular, of uncommon microbial species in the ISS, and/or of those that have significantly increased or decreased in number, space microbiologists have begun capitalizing on the maturity, speed, and cost-effectiveness of molecular/genomic microbiological technologies to elucidate changes in microbial populations in the ISS and other closed habitats. Since investigators can only collect samples infrequently from the ISS itself due to logistical reasons, Earth analogs, such as spacecraft-assembly clean rooms, are used and extensively characterized for the presence of microbes. Microbiologists identify the predominant, problematic, and extremophilic microbial species in these closed habitats and use the ISS as a testbed to study their resistance to extreme extraterrestrial environmental conditions. Investigators monitor the microbes exposed to the real space conditions in order to track their genomic changes in response to the selective pressures present in outer space (external to the ISS) and the spaceflight (in the interior of the ISS). In this review, we discussed the presence of microbes in space research-related closed habitats and the resistance of some microbial species to the extreme environmental conditions of space.
机译:国家研究委员会(NRC)最近已经认可国际空间站(ISS)非常适合进一步研究封闭生境中的微生物物种。响应NRC的呼吁,特别是对ISS中不常见的微生物物种和/或数量显着增加或减少的物种的研究,空间微生物学家已开始利用分子的成熟度,速度和成本效益。 /基因组微生物技术,以阐明国际空间站和其他封闭生境中微生物种群的变化。由于研究人员由于后勤原因只能很少从国际空间站本身收集样品,因此使用了类似地球的物质,例如航天器组装的洁净室,并针对微生物的存在进行了广泛表征。微生物学家确定了这些封闭栖息地中主要的,有问题的和极端的微生物物种,并使用ISS作为测试平台来研究其对极端地外环境条件的抵抗力。研究人员监视暴露于真实空间条件下的微生物,以便响应外层空间(国际空间站外部)和航天飞行(国际空间站内部)中存在的选择性压力来追踪其基因组变化。在这篇综述中,我们讨论了与空间研究相关的封闭栖息地中微生物的存在,以及某些微生物对空间极端环境条件的抵抗力。

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