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Screening and characterization of extremophiles in spacecraft assembly environment北大核心CSCD
作者姓名:陆月盈  杨建楼  付玉明  张兰涛  刘红
作者单位:1.北京航空航天大学生物与医学工程学院教育部生物力与力学生物学重点实验室100191;2.北京航空航天大学生物与医学工程学院生物医学工程高精尖创新中心100191;3.北京航空航天大学空天生物技术与医学工程国际联合研究中心100191;4.北京空间飞行器总体设计部100094;
基金项目:民用航天技术预先研究项目(B0107)资助。
摘    要:Spacecrafts need to strictly control microorganisms before entering space flight. The Spacecraft Assembly, Integration, and Test Center (AITC) is an important environmental source for spacecrafts to carry microorganisms. The assembly clean room has characteristics of ventilation, dryness, and lack of nutrients that are not conducive to the growth and reproduction of microorganisms, except for extremophiles. In this study, based on the internal air and surface environment of the AITC in China, 13 strains of bacteria were identified by plate culture and 16S sequence analysis, and their extreme environmental tolerance, antibiotic resistance, and film-forming ability were tested. All these bacteria belonged to the Firmicutes and Proteobacteria phyla, and nine strains belonged to the Bacillus genus. All 13 strains of bacteria were salt-tolerant, acid-tolerant, and alkali-tolerant, and 69.2% of the bacteria survived heat shock at 80 ℃. Among these, one strain of Sphingomonas sp. JCM7513 isolated from the surface environment was insensitive to all the tested antibiotics and had strong drug resistance, while the other 12 strains were sensitive to most β-lactam antibiotics but had strong resistance to tetracyclic antibiotics and erythromycin. Most of the isolated bacteria exhibited strong biofilm-forming abilities. The study showed that there are a certain number of extremophiles in the spacecraft assembly environment. To protect spacecrafts from biological corrosion and planetary protection forward pollution, more effective monitoring and elimination methods are needed. © 2022 Science Press. All rights reserved.

关 键 词:航天器组装环境  AIT中心  微生物污染  极端微生物  行星保护  抗生素耐药性
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