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Biosignatures and microbial fossils in endolithic microbial communities colonizing Ca-sulfate crusts in the Atacama Desert

机译:阿塔卡马沙漠中硫酸钙结壳内生微生物群落中的生物特征和微生物化石

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摘要

Since the description of microbial communities colonizing Ca-sulfate crusts in the Atacama Desert, there has been much interest in the mechanisms that could lead to the formation and preservation of biosignatures or microbial fossils of these communities. A key to understanding physico-chemical processes of taphonomy and early diagenesis is to examine microfossils in their natural environment. In this study, we characterize organomineral traces and microbial fossils found around microbial communities present in these Ca-sulfate crusts. Through scanning electron microscopy, microanalytical (EDS) and Raman spectroscopy techniques, calcium carbonate precipitates were detected around remnants of cryptoendolithic algae beneath the crust surface. As what seems to be the final step in the organomineralization of these cryptoendolithic communities, we also observed alga cell remains permineralized by Mg-Si-rich minerals inside gypsum crystals. Additionally, Mg-Si bearing minerals formed a web-like structure within the hypoendolithic cyanobacterial habitat via permineralization of extracellular polymeric substances. Our observations indicate that despite the extremely hyperarid environment, microenvironmental conditions may be appropriate for the formation of biosignatures and microbial fossils of extinct endolithic microbial communities. A model of the possible organomineralization processes involved is presented.
机译:自从描述了阿塔卡马沙漠中硫酸钙硬壳微生物群落的描述以来,人们对引起这些群落生物特征或微生物化石形成和保存的机制引起了极大的兴趣。理解拓扑学和早期成岩作用的物理化学过程的关键是检查其自然环境中的微化石。在这项研究中,我们表征了在这些硫酸钙结皮中存在的微生物群落周围发现的有机矿物痕迹和微生物化石。通过扫描电子显微镜,显微分析(EDS)和拉曼光谱技术,在地壳表面下方隐隐藻类藻类残余物周围检测到碳酸钙沉淀。在这些隐岩质群落的有机矿化中,这似乎是最后一步,我们还观察到藻类细胞仍然被石膏晶体中富含Mg-Si的矿物矿化。另外,通过胞外聚合物质的矿化作用,含Mg-Si的矿物在低内层藻蓝细菌栖息地内形成网状结构。我们的观察结果表明,尽管环境极端干旱,但微环境条件可能适合于绝种内生微生物群落的生物特征和微生物化石的形成。提出了可能涉及的有机矿化过程的模型。

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