G M Edwards Howell, Jehlička Jan, Němečková Kateřina, Culka Adam
Centre for Astrobiology and Extremophiles Research, Faculty of Life Sciences, University of Bradford, Bradford BD7 1DP, UK.
Institute of Geochemistry, Mineralogy and Mineral Resources, Faculty of Science, Charles University, 128 43 Prague, Czech Republic.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 May 5;292:122406. doi: 10.1016/j.saa.2023.122406. Epub 2023 Jan 24.
Microbial colonisations of gypsum from Eastern Poland (Badenian, Middle Miocene age) were investigated by Raman microspectrometry with a rarely used excitation 445 nm excitation. Zones of microbial colonisation in selenitic gypsum endolithic outcrops comprise algae and cyanobacteria, which commonly contain the photosynthetic and protective pigments carotenoids, scytonemin and gloeocapsin. Diagnostic bands differing from those of scytonemin have been identified in black colonies in gypsum outcrops at Chotel Czierwony (Poland). Raman spectral signatures of scytonin are reported here for the first time in two endolithic specimens identified by the band wavenumbers predicted from DFT calculations. The strong or medium strong intensity Raman bands observed at 1603, 1585, 1559, 1435, and 1424 cm. Other weaker bands were located at 1676 (sh), 1660 (sh), 1649, 1399, 1362, 1342, 1320, 1294, 1272, 1259, and 1052 cm. The first observation of the Raman spectrum of scytonin in the cyanobacterial colonisation of gypsum facilitates the inclusion of this new biomolecular signature in the library of unique Raman spectra of biological pigments invaluable for detection of traces of life in frame of the planetary missions.
利用激发波长为445nm(这种激发波长很少使用)的拉曼显微光谱法,对来自波兰东部(中新世中期巴登阶)的石膏中的微生物定殖情况进行了研究。在透明石膏内生露头中的微生物定殖区域包含藻类和蓝细菌,它们通常含有光合和保护性色素类胡萝卜素、鞘脂类色素和球囊菌素。在波兰乔泰尔切尔沃尼的石膏露头中的黑色菌落中,已鉴定出与鞘脂类色素不同的诊断谱带。本文首次报道了通过密度泛函理论(DFT)计算预测的波数带,在两个内生标本中检测到的鞘脂宁的拉曼光谱特征。在1603、1585、1559、1435和1424cm处观察到强或中强强度的拉曼谱带。其他较弱的谱带位于1676(肩峰)、1660(肩峰)、1649、1399、1362、1342、1320、1294、1272、1259和1052cm处。在石膏的蓝细菌定殖中首次观察到鞘脂宁的拉曼光谱,这有助于将这种新的生物分子特征纳入独特的生物色素拉曼光谱库,这对于在行星任务框架内检测生命痕迹非常重要。