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Nitrogen cycling in the secondary nitrite maximum of the eastern tropical North Pacific off Costa Rica

机译:哥斯达黎加东部热带北太平洋次生亚硝酸盐最大值中的氮循环

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Nitrite is a central intermediate in the marine nitrogen cycle and represents a critical juncture where nitrogen can be reduced to the less bioavailable N-2 gas or oxidized to nitrate and retained in a more bioavailable form. We present an analysis of rates of microbial nitrogen transformations in the oxygen deficient zone (ODZ) within the eastern tropical North Pacific Ocean (ETNP). We determined rates using a novel one-dimensional model using the distribution of nitrite and nitrate concentrations, along with their natural abundance nitrogen (N) and oxygen (O) isotope profiles. We predict rate profiles for nitrate reduction, nitrite reduction, and nitrite oxidation throughout the ODZ, as well as the contributions of anammox to nitrite reduction and nitrite oxidation. Nitrate reduction occurs at a maximum rate of 25 nM d(-1) at the top of the ODZ, at the same depth as the maximum rate of nitrite reduction, 15 nM d(-1). Nitrite oxidation occurs at maximum rates of 10nMd(-1) above the secondary nitrite maximum, but also in the secondary nitrite maximum, within the ODZ. Anammox contributes to nitrite oxidation within the ODZ but cannot account for all of it. Nitrite oxidation within the ODZ that is not through anammox is also supported by microbial gene abundance profiles. Our results suggest the presence of nitrite oxidation within the ETNP ODZ, with implications for the distribution and physiology of marine nitrite-oxidizing bacteria, and for total nitrogen loss in the largest marine ODZ.
机译:亚硝酸盐是海洋氮循环中的中心中间体,它代表着一个关键时刻,其中氮可以还原成生物利用度较低的N-2气体或氧化成硝酸盐并以生物利用度较高的形式保留。我们目前对东部热带北太平洋(ETNP)内缺氧区(ODZ)中微生物氮转化率的分析。我们使用亚硝酸盐和硝酸盐浓度及其自然丰度氮(N)和氧(O)同位素分布的新型一维模型确定速率。我们预测了整个ODZ中硝酸盐还原,亚硝酸盐还原和亚硝酸盐氧化的速率分布,以及厌氧氨氧化对亚硝酸盐还原和亚硝酸盐氧化的贡献。在ODZ顶部,硝酸盐还原的最大速率为25 nM d(-1),深度与亚硝酸盐还原的最大速率15 nM d(-1)相同。亚硝酸盐的氧化以最大速率比次要亚硝酸盐最大值高10nMd(-1),但也要在ODZ内以次要亚硝酸盐最大值发生。 Anammox有助于ODZ内的亚硝酸盐氧化,但不能解释所有原因。微生物基因丰度曲线也支持了不通过厌氧氨氧化的ODZ中的亚硝酸盐氧化。我们的结果表明,ETNP ODZ中存在亚硝酸盐氧化,这对海洋亚硝酸盐氧化细菌的分布和生理以及最大的海洋ODZ中的总氮损失具有影响。

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