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Cultivation of Anaerobic and Facultatively Anaerobic Bacteria from Spacecraft-Associated Clean Rooms

机译:与航天器相关的洁净室中厌氧菌和兼性厌氧菌的培养

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摘要

In the course of this biodiversity study, the cultivable microbial community of European spacecraft-associated clean rooms and the Herschel Space Observatory located therein were analyzed during routine assembly operations. Here, we focused on microorganisms capable of growing without oxygen. Anaerobes play a significant role in planetary protection considerations since extraterrestrial environments like Mars probably do not provide enough oxygen for fully aerobic microbial growth. A broad assortment of anaerobic media was used in our cultivation strategies, which focused on microorganisms with special metabolic skills. The majority of the isolated strains grew on anaerobic, complex, nutrient-rich media. Autotrophic microorganisms or microbes capable of fixing nitrogen were also cultivated. A broad range of facultatively anaerobic bacteria was detected during this study and also, for the first time, some strictly anaerobic bacteria (Clostridium and Propionibacterium) were isolated from spacecraft-associated clean rooms. The multiassay cultivation approach was the basis for the detection of several bacteria that had not been cultivated from these special environments before and also led to the discovery of two novel microbial species of Pseudomonas and Paenibacillus.
机译:在这项生物多样性研究的过程中,对欧洲航天器相关洁净室的可培养微生物群落以及位于其中的赫歇尔太空天文台进行了常规组装操作。在这里,我们专注于能够在无氧条件下生长的微生物。厌氧菌在保护行星方面起着重要作用,因为像火星这样的外星环境可能无法为充分需氧的微生物生长提供足够的氧气。我们的培养策略中使用了各种各样的厌氧培养基,其重点是具有特殊代谢技能的微生物。大多数分离出的菌株在厌氧,复杂,营养丰富的培养基上生长。还培养了能够固氮的自养微生物或微生物。在这项研究中检测到了各种各样的兼性厌氧细菌,而且首次从与航天器相关的洁净室中分离出了一些严格的厌氧细菌(梭菌和丙酸杆菌)。多重测定法的培养方法是检测以前从未在这些特殊环境中培养过的几种细菌的基础,并且还导致发现了两种新型的假单胞菌和假单胞菌微生物。

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