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Isotopic Constraints on Nitrogen Transformation Rates in the Deep Sedimentary Marine Biosphere

机译:深度沉积海洋生物圈中氮转化率的同位素约束

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Little is known about the nature of microbial community activity contributing to the cycling of nitrogen in organic-poor sediments underlying the expansive oligotrophic ocean gyres. Here we use pore water concentrations and stable N and O isotope measurements of nitrate and nitrite to constrain rates of nitrogen cycling processes over a 34-m profile from the deep North Atlantic spanning fully oxic to anoxic conditions. Using a 1-D reaction-diffusion model to predict the distribution of nitrogen cycling rates, results converge on two distinct scenarios: (1) an exceptionally high degree of coupling between nitrite oxidation and nitrate reduction near the top of the anoxic zone or (2) an unusually large N isotope effect (similar to 60) for nitrate reduction that is decoupled from the corresponding O isotope effect, which is possibly explained by enzyme-level interconversion between nitrite and nitrate.
机译:关于微生物群落活动的性质,有助于膨胀性沉积物的氮气循环的微生物群落活动的性质少众所周知。 在这里,我们使用孔水浓度和稳定的N和O同位素测量硝酸盐和亚硝酸盐,从而限制氮循环过程的速率,从深度北大西洋完全氧化到缺氧条件下的34米。 使用1-D反应扩散模型预测氮循环速率的分布,结果会聚在两个明显的情况下:(1)亚硝酸盐氧化与亚麻区顶部附近的亚硝酸盐氧化和硝酸盐之间的高偶联程度或(2 )对于硝酸盐还原的异常大的N同位素效应(类似于60),其与相应的O同位素效应分离,这可能通过亚硝酸盐和硝酸盐之间的酶水平互连来解释。

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