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FT-Raman spectroscopic analysis of endolithic microbial communities from Beacon sandstone in Victoria Land, Antarctica

机译:南极维多利亚州灯塔砂岩内部微生物群落的FT-拉曼光谱分析

摘要

Laser-based Fourier-Transform Raman spectroscopy (FTRS) has been used to identify in situ compounds of ecophysiological significance in diverse field-fresh Antarctic cryptoendolithic microbial communities. FTRS does not disrupt the community and permits characterization of visible and invisible compounds in their natural configuration within cells and their current or former microhabitat. The small “footprint” of the microscopic laser beam permits accurate analysis of discrete zones of compounds produced by extant or degraded micro-organisms with minimum destruction of the biota. This spatial chemical analysis is applicable to any translucent or exposed habitat or biotic assemblage. Two hydrated forms of biodegradative calcium oxalate were differentiated in black-pigmented and hyaline lichen zones of endolithic communities. The oxalate was restricted to zones containing fungi. Communities dominated by cyanobacteria at Battleship Promontory (77°S) and a newly discovered site at Timber Peak (74°S) contrasted chemically with those dominated by eukaryotic algae at East Beacon (78°S). FTRS also showed the zonation of pigments including chlorophyll and UV-protective carotenoids in situ. At extreme sites on the polar plateau, it revealed the presence of “fossil” endolithics where detrimental climatic changes had made the microbes non-viable or amorphous, being represented solely by their residual bio-molecules. The technique has potential for past or present life-detection anywhere in the world without destruction of the microniche
机译:基于激光的傅立叶变换拉曼光谱法(FTRS)已被用于在各种田间新鲜的南极隐土层微生物群落中鉴定具有生态生理意义的原位化合物。 FTRS不会破坏社区,并允许以细胞内的自然构型及其当前或以前的微生境表征可见和不可见化合物。微观激光束的“足迹”小巧,可对由现存或降解的微生物产生的化合物的离散区域进行精确分析,而对生物群的破坏最小。这种空间化学分析适用于任何半透明或裸露的栖息地或生物集合。在内石器群落的黑色和透明地衣区中,有两种水合形式的生物降解草酸钙被区分。草酸盐仅限于含有真菌的区域。在战舰海角(77°S)以蓝细菌为主的社区和在木材峰(74°S)的新发现地点与东部信标(78°S)的真核藻类为主的社区形成了鲜明的对比。 FTRS还显示了原位色素的分区,包括叶绿素和紫外线防护类胡萝卜素。在极地高原的极端地点,它揭示了“化石”内结石的存在,有害的气候变化使微生物无法生存或无定形,仅由其残留生物分子代表。该技术具有在世界范围内检测过去或现在的生命的潜力,而不会破坏微生态位

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