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Biosphere frontiers of subsurface life in the sedimented hydrothermal system of Guaymas Basin

机译:瓜马斯盆地沉积热液系统中地下生物的生物圈前沿

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摘要

Temperature is one of the key constraints on the spatial extent, physiological and phylogenetic diversity, and biogeochemical function of subsurface life. A model system to explore these interrelationships should offer a suitable range of geochemical regimes, carbon substrates and temperature gradients under which microbial life can generate energy and sustain itself. In this theory and hypothesis article, we make the case for the hydrothermally heated sediments of Guaymas Basin in the Gulf of California as a suitable model system where extensive temperature and geochemical gradients create distinct niches for active microbial populations in the hydrothermally influenced sedimentary subsurface that in turn intercept and process hydrothermally generated carbon sources. We synthesize the evidence for high-temperature microbial methane cycling and sulfate reduction at Guaymas Basin – with an eye on sulfate-dependent oxidation of abundant alkanes – and demonstrate the energetic feasibility of these latter types of deep subsurface life in previously drilled Guaymas Basin locations of Deep-Sea Drilling Project 64.
机译:温度是对地下生命的空间范围,生理和系统发育多样性以及生物地球化学功能的关键限制之一。探索这些相互关系的模型系统应提供合适的地球化学范围,碳基质和温度梯度,在这些范围内微生物生命可以产生能量并维持自身。在该理论和假设文章中,我们以加利福尼亚湾瓜伊马斯盆地的热液沉积物为例,作为合适的模型系统,其中广泛的温度和地球化学梯度为热液影响的沉积物地下的活性微生物种群创造了独特的生态位。依次拦截并处理水热产生的碳源。我们综合了瓜亚马斯盆地高温微生物甲烷循环和硫酸盐还原的证据-着眼于丰富的烷烃的硫酸盐依赖性氧化-并证明了在先前钻过的瓜亚马斯盆地位置这些深层地下生命的能量可行性深海钻探项目64。

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