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首页> 外文期刊>Frontiers in Microbiology >In situ Detection of Microbial Life in the Deep Biosphere in Igneous Ocean Crust
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In situ Detection of Microbial Life in the Deep Biosphere in Igneous Ocean Crust

机译:原位在火成硬壳深层生物圈中的微生物生命检测

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摘要

The deep biosphere is a major frontier to science. Recent studies have shown the presence and activity of cells in deep marine sediments and in the continental deep biosphere. Volcanic lavas in the deep ocean subsurface, through which substantial fluid flow occurs, present another potentially massive deep biosphere. We present results from the deployment of a novel in situ logging tool designed to detect microbial life harbored in a deep, native, borehole environment within igneous oceanic crust, using deep ultraviolet native fluorescence spectroscopy. Results demonstrate the predominance of microbial-like signatures within the borehole environment, with densities in the range of 10~(5)cells/mL. Based on transport and flux models, we estimate that such a concentration of microbial cells could not be supported by transport through the crust, suggesting in situ growth of these communities.
机译:深入的生物圈是科学的主要前沿领域。最近的研究表明,在深海沉积物中和大陆深部生物圈中细胞的存在和活性。深海地下的火山熔岩发生大量的流体流动,形成了另一个潜在的巨大的深生物圈。我们介绍了一种新颖的原位测井工具的部署结果,该工具旨在使用深紫外原生荧光光谱技术检测火成大洋壳内深层,原生,钻孔环境中的微生物生活。结果表明,在井眼环境中,微生物样特征占主导地位,密度在10〜(5)cells / mL范围内。基于运输和通量模型,我们估计通过壳的运输不能支持如此浓度的微生物细胞,表明这些群落在原位生长。

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