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首页> 外文期刊>Biogeosciences Discussions >Vertical segregation among pathways mediating nitrogen loss (N2 and N2O production) across the oxygen gradient in a coastal upwelling ecosystem
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Vertical segregation among pathways mediating nitrogen loss (N2 and N2O production) across the oxygen gradient in a coastal upwelling ecosystem

机译:在沿海上升生态系统中介导氮损失(N2和N2O生产)中氧气损失(N2和N2O生产)的途径垂直偏析

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摘要

The upwelling system off central Chile (36.5°?S) is seasonally subjected to oxygen (O2)-deficient waters, with a strong vertical gradient in O2 (from oxic to anoxic conditions) that spans a few metres (30–50?m interval) over the shelf. This condition inhibits and/or stimulates processes involved in nitrogen (N) removal (e.g. anammox, denitrification, and nitrification). During austral spring (September?2013) and summer (January?2014), the main pathways involved in N loss and its speciation, in the form of N2 and/or N2O, were studied using 15N-tracer incubations, inhibitor assays, and the natural abundance of nitrate isotopes along with hydrographic information. Incubations were developed using water retrieved from the oxycline (25?m depth) and bottom waters (85?m depth) over the continental shelf off Concepción, Chile. Results of 15N-labelled incubations revealed higher N removal activity during the austral summer, with denitrification as the dominant N2-producing pathway, which occurred together with anammox at all times. Interestingly, in both spring and summer maximum potential N removal rates were observed in the oxycline, where a greater availability of oxygen was observed (maximum O2 fluctuation between 270 and 40?μmol?L?1) relative to the hypoxic bottom waters (???20?μmol?O2?L?1). Different pathways were responsible for N2O produced in the oxycline and bottom waters, with ammonium oxidation and dissimilatory nitrite reduction, respectively, as the main source processes. Ammonium produced by dissimilatory nitrite reduction to ammonium (DNiRA) could sustain both anammox and nitrification rates, including the ammonium utilized for N2O production. The temporal and vertical variability of δ15N-NO3? confirms that multiple N-cycling processes are modulating the isotopic nitrate composition over the shelf off central Chile during spring and summer. N removal processes in this coastal system appear to be related to the availability and distribution of oxygen and particles, which are a source of organic matter and the fuel for the production of other electron donors (i.e. ammonium) and acceptors (i.e. nitrate and nitrite) after its remineralization. These results highlight the links between several pathways involved in N loss. They also establish that different mechanisms supported by alternative N substrates are responsible for substantial accumulation of N2O, which are frequently observed as hotspots in the oxycline and bottom waters. Considering the extreme variation in oxygen observed in several coastal upwelling systems, these findings could help to understand the ecological and biogeochemical implications due to global warming where intensification and/or expansion of the oceanic OMZs is projected.
机译:关闭中央智利(36.5°S)的升高系统经季节性地受到氧气(O2)的水域,在跨越几米(30-50?米间隔)的O2(来自氧化症到缺氧条件)中具有强烈的垂直梯度。 )在架子上。该条件抑制和/或刺激氮气(N)去除(例如厌氧,反硝化和硝化)所涉及的方法。在南春季(2013年9月)和夏季(1月份2014年),使用15N-Tracer孵育,抑制剂测定和抑制剂测定和N2和/或N2O的形式参与N损失及其物种的主要途径。与水文信息一起硝酸盐同位素的自然丰富。使用从辣椒的大陆架上从源素(25Ωmem)和底部水(85Ωm深度)从Concepción,智利的大陆架(85Ωm深度)进行孵育。 15N标记的孵育的结果显示南澳大利亚夏季的N次去除活性较高,作为优势N2产生途径的脱氮,其始终与厌氧毒剂一起发生。有趣的是,在春季和夏季的春季和夏季最大潜力中,在源素中观察到去除速率,其中观察到氧气的更大可用性(相对于缺氧底部水(270-40摩尔Δ1)的最大可用性(270-40Ω·l≤1)(?? ?20?μmol?O2?L?1)。不同的途径对氧化素和底部水产生的N2O负责,分别具有氧化铵和含氮亚硝酸盐作为主要源方法。由含氮石硝酸盐还原成铵(DNIRA)产生的铵可以维持厌氧和硝化速率,包括用于N2O生产的铵。 Δ15n-no3的时间和垂直变异性?确认多个N循环过程正在春季和夏季在智利中央驾驶时调节同位素硝酸盐组合物。 N沿海系统中的N去除过程似乎与氧气和颗粒的可用性和分布有关,这是有机物质的源和用于生产其他电子给体(即铵)和受体的燃料(即硝酸盐和亚硝酸盐)重新融化后。这些结果突出了N损耗所涉及的几种途径之间的链接。它们还建立了替代N底物支持的不同机制负责N2O的大量积累,其经常被观察为源素和底部水中的热点。考虑到几个沿海上升系统中观察到的极端变化,这些发现可以帮助了解由于全球变暖导致的生态化学和生物地球化学影响,其中预测了海洋OMZ的强化和/或扩张。

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