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Detection of microorganism from China's spacecraft assembly cleanroom

机译:从中国航天器组装洁净室的微生物检测

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Adequate research showed that microorganisms are ubiquitous in orbiting space station, which have a potential impact on the health status of astronauts and reliability of equipment. Microbial community analysis of spacecraft-associated assembly cleanroom is important, since they are considered as prime culprit by some to cause spacecraft equipment malfunction. In this study, culturable bacteira in spacecraft assembly cleanroom (SAC) was detected by contact plate. Furthermore, quantitative loop-mediated isothermal amplification (qLAMP) was first used to assess the abundance of fungi in air sample of SAC. Thirty eight bacteria were isolated and identified. The total culturable bacterial burden for SAC surface samples was 36-632 CFU/100 m(2), while fungal burden was 160-236 CFU/100 m(2). The fungal burden for SAC air samples was 5.36 x 10(2)-3.62 x 10(4) 28S rRNA gene copies/m(3). A viability ratio of 12.36-23.12% was detected by PMA treatment. The results of this study first revealed the overall culturable bacteria diversity and fungal abundance in the SAC of China, which will facilitate further development of a targeted biological safety prevention and maintenance practices.
机译:适当的研究表明,微生物在轨道空间站中普遍存在,这对宇航员的健康状况和设备可靠性产生了潜在影响。微生物群落分析航天器相关的组装洁净室很重要,因为它们被一些被认为是主要罪魁祸首,以免导致航天器设备发生故障。在本研究中,通过接触板检测到航天器组装洁净室(SAC)中的培养Bacteira。此外,首先使用定量环介质介导的等温扩增(QLAMP)来评估囊的空气样本中的真菌丰富。分离并鉴定了三十八个细菌。囊表面样品的总培养细菌负担为36-632 CFU / 100米(2),而真菌负担为160-236 CFU / 100米(2)。 Sac空气样品的真菌负担为5.36×10(2)-3.62×10(4)28s rRNA基因拷贝/ m(3)。通过PMA治疗检测可活力比为12.36-23.12%。本研究的结果首先揭示了中国囊中的整体培养细菌多样性和真菌丰度,这将促进进一步发展目标生物安全预防和维修实践。

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