...
首页> 外文期刊>Applied and Environmental Microbiology >Isolation of Novel Extreme-Tolerant Cyanobacteria from a Rock-Dwelling Microbial Community by Using Exposure to Low Earth Orbit
【24h】

Isolation of Novel Extreme-Tolerant Cyanobacteria from a Rock-Dwelling Microbial Community by Using Exposure to Low Earth Orbit

机译:通过暴露于低地球轨道从居住在岩石的微生物群落中分离出新型的极端耐性蓝细菌

获取原文

摘要

Many cyanobacteria are known to tolerate environmental extremes. Motivated by an interest in selecting cyanobacteria for applications in space, we launched rocks from a limestone cliff in Beer, Devon, United Kingdom, containing an epilithic and endolithic rock-dwelling community of cyanobacteria into low Earth orbit (LEO) at a height of approximately 300 kilometers. The community was exposed for 10 days to isolate cyanobacteria that can survive exposure to the extreme radiation and desiccating conditions associated with space. Culture-independent (16S rRNA) and culture-dependent methods showed that the cyanobacterial community was composed of Pleurocapsales, Oscillatoriales, and Chroococcales. A single cyanobacterium, a previously uncharacterized extremophile, was isolated after exposure to LEO. We were able to isolate the cyanobacterium from the limestone cliff after exposing the rock-dwelling community to desiccation and vacuum (0.7 × 10?3 kPa) in the laboratory. The ability of the organism to survive the conditions in space may be linked to the formation of dense colonies. These experiments show how extreme environmental conditions, including space, can be used to select for novel microorganisms. Furthermore, it improves our knowledge of environmental tolerances of extremophilic rock-dwelling cyanobacteria.
机译:已知许多蓝细菌可以耐受极端环境。出于对在空间应用中选择蓝细菌的兴趣的推动,我们从英国德文郡比尔的石灰岩悬崖发射了岩石,该岩石包含蓝细菌的上石器时代和内石器时代的岩石居住社区,进入了大约高度的低地球轨道(LEO) 300公里该社区暴露了10天以分离出蓝细菌,该细菌可以在暴露于与空间相关的极端辐射和干燥条件下幸存下来。不依赖于培养物(16S rRNA)和依赖于培养物的方法表明,蓝细菌群落由平菇,O骨菌和色球菌组成。暴露于LEO后分离出一个单一的蓝细菌,一种以前未鉴定过的极端微生物。在实验室中将岩石居住社区暴露于干燥和真空(0.7×10?3 kPa)后,我们能够从石灰岩峭壁中分离出蓝细菌。生物体在太空条件下生存的能力可能与致密菌落的形成有关。这些实验表明,如何利用极端环境条件(包括空间)来选择新型微生物。此外,它提高了我们对极端岩性居留蓝藻环境耐受性的了解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号