首页> 外文期刊>Frontiers in Microbiology >Nitrogen Stimulates the Growth of Subsurface Basalt-associated Microorganisms at the Western Flank of the Mid-Atlantic Ridge
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Nitrogen Stimulates the Growth of Subsurface Basalt-associated Microorganisms at the Western Flank of the Mid-Atlantic Ridge

机译:氮刺激中大西洋海脊西翼下玄武岩相关的微生物的生长

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Oceanic crust constitutes the largest aquifer system on Earth, and microbial activity in this environment has been inferred from various geochemical analyses. However, empirical documentation of microbial activity from subsurface basalts is still lacking, particularly in the cool (<25°C) regions of the crust, where are assumed to harbor active iron-oxidizing microbial communities. To test this hypothesis, we report the enrichment and isolation of crust-associated microorganisms from North Pond, a site of relatively young and cold basaltic basement on the western flank of the Mid-Atlantic Ridge that was sampled during Expedition 336 of the Integrated Ocean Drilling Program. Enrichment experiments with different carbon (bicarbonate, acetate, methane) and nitrogen (nitrate and ammonium) sources revealed significant cell growth (one magnitude higher cell abundance), higher intracellular DNA content, and increased Fe~(3+)/ΣFe ratios only when nitrogen substrates were added. Furthermore, a Marinobacter strain with neutrophilic iron-oxidizing capabilities was isolated from the basalt. This work reveals that basalt-associated microorganisms at North Pond had the potential for activity and that microbial growth could be stimulated by in vitro nitrogen addition. Furthermore, iron oxidation is supported as an important process for microbial communities in subsurface basalts from young and cool ridge flank basement.
机译:大洋地壳是地球上最大的含水层系统,并且根据各种地球化学分析推断出该环境中的微生物活动。但是,仍然缺乏来自地下玄武岩的微生物活性的经验文献,特别是在地壳的凉爽(<25°C)区域,那里被认为具有活跃的铁氧化微生物群落。为了验证这一假设,我们报告了北大西洋中部与地壳相关的微生物的富集和分离,北池塘是大西洋中脊西翼相对较年轻且冷的玄武岩基底的一个站点,在综合海洋钻探336探险期间取样程序。仅在以下情况下,使用不同碳(碳酸氢盐,乙酸盐,甲烷)和氮(硝酸盐和铵)来源的富集实验显示出明显的细胞生长(细胞丰度高一级),更高的细胞内DNA含量以及增加的Fe〜(3 +)/ΣFe比添加氮气底物。此外,从玄武岩中分离出具有嗜中性铁氧化能力的马氏杆菌菌株。这项工作表明,北塘的玄武岩相关微生物具有活性的潜力,并且可以通过添加体外氮来刺激微生物的生长。此外,铁氧化被认为是来自年轻而凉爽的脊侧面的地下玄武岩中微生物群落的重要过程。

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