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拉曼成像在岩石微生物定殖中的应用——一些分析方面。

Raman imaging of microbial colonization in rock-some analytical aspects.

机构信息

Global Change Research Institute of the Czech Academy of Sciences, Bělidla 986/4a, 603 00, Brno, Czech Republic.

Museo Nacional de Ciencias Naturales, CSIC, c/ Serrano 115 dpdo., 28006, Madrid, Spain.

出版信息

Anal Bioanal Chem. 2020 Jun;412(15):3717-3726. doi: 10.1007/s00216-020-02622-8. Epub 2020 Apr 5.

Abstract

Raman imaging allows one to obtain spatially resolved chemical information in a nondestructive manner. Herein, we present analytical aspects of effective in situ and in vivo Raman imaging of algae and cyanobacteria from within their native rock habitats. Specifically, gypsum and halite inhabited by endolithic communities from the hyperarid Atacama Desert were analyzed. Raman imaging of these phototrophic colonization reveals a pigment composition within the aggregates that helps in understanding some of their adaptation strategies to survive in this harsh polyextreme environment. The study is focused on methodical aspects of Raman imaging acquisition and subsequent data processing. Point imaging is compared with line imaging in terms of their image quality, spatial resolution, spectral signal-to-noise ratio, time requirements, and risk of laser-induced sample alteration. The roles of excitation wavelength, exposure time, and step size of the imaging grid on successful Raman imaging results are also discussed. Graphical abstract.

摘要

拉曼成象能够以非破坏性的方式获得空间分辨的化学信息。在此,我们介绍了从其天然岩石生境中对藻类和蓝细菌进行有效原位和活体拉曼成象的分析方面。具体而言,对来自极度干旱的阿塔卡马沙漠的内生群落所居住的石膏和石盐进行了分析。对这些光合定殖体的拉曼成象揭示了聚集体内的色素组成,这有助于理解它们在这种恶劣的多极端环境中生存的一些适应策略。本研究侧重于拉曼成象采集和后续数据处理的方法学方面。点成象和线成象在图像质量、空间分辨率、光谱信噪比对、时间要求和激光诱导样品改变的风险方面进行了比较。还讨论了激发波长、曝光时间和成像网格的步长对成功的拉曼成象结果的影响。

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