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Multimicrobial Kombucha Culture Tolerates Mars-like Conditions Simulated on Low Earth Orbit

机译:多菌类康普茶文化可以忍受低地球轨道上模拟的火星状条件

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A kombucha multimicrobial culture (KMC) was exposed to simulated Mars-like conditions in low Earth orbit (LEO). The study was part of the BIOlogy and Mars EXperiment (BIOMEX), which was accommodated in the European Space Agency's EXPOSE-R2 facility, outside the International Space Station. The aim of the study was to investigate the capability of a KMC microecosystem to survive simulated Mars-like conditions in LEO. During the 18-month exposure period, desiccated KMC samples, represented by living cellulose-based films, were subjected to simulated anoxic Mars-like conditions and ultraviolet (UV) radiation, as prevalent at the surface of present-day Mars. Postexposure analysis demonstrated that growth of both the bacterial and yeast members of the KMC community was observed after 60 days of incubation; whereas growth was detected after 2 days in the initial KMC. The KMC that was exposed to extraterrestrial UV radiation showed degradation of DNA, alteration in the composition and structure of the cellular membranes, and an inhibition of cellulose synthesis. In the “space dark control” (exposed to LEO conditions without the UV radiation), the diversity of the microorganisms that survived in the biofilm was reduced compared with the ground-based controls. This was accompanied by structural dissimilarities in the extracellular membrane vesicles. After a series of subculturing, the revived communities restored partially their structure and associated activities.
机译:康普茶多微生物培养物(KMC)在低地球轨道(LEO)中暴露于模拟的火星状条件。这项研究是生物与火星实验(BIOMEX)的一部分,该研究被安置在国际空间站外欧洲航天局的EXPOSE-R2设施中。该研究的目的是研究KMC微生态系统在LEO中模拟火星状条件下生存的能力。在18个月的暴露期内,以现存的火星表面为代表的以干燥纤维素为基膜的干燥KMC样品经受了模拟的缺氧火星状条件和紫外线(UV)辐射。暴露后分析表明,孵育60天后,观察到了KMC群落的细菌和酵母成员的生长。而最初的KMC在2天后检测到生长。暴露于外星紫外线的KMC表现出DNA降解,细胞膜组成和结构改变以及纤维素合成受到抑制。在“太空黑暗对照”(暴露于没有紫外线辐射的LEO条件下)中,与地面对照相比,在生物膜中幸存的微生物的多样性降低了。这伴随着细胞外膜囊泡的结构差异。经过一系列传教,复兴的社区部分恢复了其结构和相关活动。

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