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Development of an autofluorescence spectral database for the identification and classification of microbial extremophiles

机译:建立用于鉴定和分类微生物极端微生物的自发荧光光谱数据库

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Extremophiles are microorganisms that have adapted to severe conditions that were once considered devoid of life. The extreme settings in which these organisms flourish on Earth resemble many extraterrestrial environments. Identification and classification of extremophiles in situ (without the requirement for excessive handling and processing) can provide a basis for designing remotely operated instruments for extraterrestrial life exploration. An important consideration when designing such experiments is to prevent contamination of the environments. We are developing a reference spectral database of autofluorescence from microbial extremophiles using long-UV excitation (408 nm). Aromatic compounds are essential components of living systems, and biological molecules such as aromatic amino acids, nucleotides, porphyrins and vitamins can also exhibit fluorescence under long-UV excitation conditions. Autofluorescence spectra were obtained from a light microscope that additionally allowed observations of microbial geometry and motility. It was observed that all extremophiles studied displayed an autofluorescence peak at around 470 nm, followed by a long decay that was species specific. The autofluorescence database can potentially be used as a reference to identify and classify past or present microbial life in our solar system.
机译:极端微生物是适应曾经被认为没有生命的严酷条件的微生物。这些生物在地球上繁盛的极端环境类似于许多外星环境。现场鉴定和分类极端微生物(无需过多处理和加工)可以为设计用于外星生命探索的远程操作仪器提供基础。设计此类实验时,一个重要的考虑因素是防止环境污染。我们正在开发使用长紫外激发(408 nm)从微生物极端微生物中自发荧光的参考光谱数据库。芳香族化合物是生命系统必不可少的组成部分,在长时间的紫外线激发条件下,诸如芳香族氨基酸,核苷酸,卟啉和维生素等生物分子也可以显示荧光。自发荧光光谱从光学显微镜获得,该显微镜还允许观察微生物的几何形状和运动性。观察到,所有研究的极端微生物都在470 nm附近显示出自发荧光峰,随后发生了特定物种的长时间衰变。自发荧光数据库可以潜在地用作识​​别和分类我们太阳系中过去或现在的微生物寿命的参考。

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