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Comparative Assessment of Nitrogen Fixation Methodologies, Conducted in the Oligotrophic North Pacific Ocean

机译:在贫营养的北太平洋进行的固氮方法的比较评估

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Resolution of the nitrogen (N) cycle in the marine environment requires an accurate assessment of dinitrogen (N2) fixation. We present here an update on progress in conducting field measurements of acetylene reduction (AR) and 15N2 tracer assimilation in the oligotrophic North Pacific Subtropical Gyre (NPSG). The AR assay was conducted on discrete seawater samples using a headspace analysis system, followed by quantification of ethylene (C2H4) with a reducing compound photodetector. The rates of C2H4 production were measurable for nonconcentrated seawater samples after an incubation period of 3 to 4 h. The 15N2 tracer measurements compared the addition of 15N2 as a gas bubble and dissolved as 15N2 enriched seawater. On all sampling occasions and at all depths, a 2- to 6-fold increase in the rate of 15N2 assimilation was measured when 15N2-enriched seawater was added to the seawater sample compared to the addition of 15N2 as a gas bubble. In addition, we show that the 15N2-enriched seawater can be prepared prior to its use with no detectable loss (<1.7%) of dissolved 15N2 during 4 weeks of storage, facilitating its use in the field. The ratio of C2H4 production to 15N2 assimilation varied from 7 to 27 when measured simultaneously in surface seawater samples. Collectively, the modifications to the AR assay and the 15N2 assimilation technique present opportunities for more accurate and high frequency measurements (e.g., diel scale) of N2 fixation, providing further insight into the contribution of different groups of diazotrophs to the input of N in the global oceans.
机译:要解决海洋环境中的氮(N)循环,需要准确评估二氮(N 2 )固定。我们在此介绍在贫营养的北太平洋亚热带环流(NPSG)中进行乙炔还原(AR)和 15 N 2 示踪剂同化进行现场测量的最新进展。使用顶空分析系统在离散的海水样品上进行AR分析,然后使用还原化合物光电检测器对乙烯(C 2 H 4 )进行定量。孵育3至4小时后,对于非浓缩海水样品,可以测量C 2 H 4 的产生速率。 15 N 2 示踪剂测量结果比较了添加 15 N 2 作为气泡并溶解为 15 N 2 富集海水。在所有采样场合和所有深度下,当 15 时,测量到的 15 N 2 同化率增加了2到6倍与以气泡形式添加 15 N 2 相比,向海水样品中添加了富含N 2 的海水。此外,我们证明了富含 15 N 2 的海水可以在使用前制备,而溶解的 15 < / sup> N 2 在存储4周后,便于在野外使用。同时测量C 2 H 4 与 15 N 2 同化的比率在7到27之间变化。地表海水样本。总的来说,对AR分析和 15 N 2 同化技术的改进为N 2的更准确和高频测量(例如,迪尔规模)提供了机会固定,可进一步了解重氮化物的不同类别对全球海洋中N的输入的贡献。

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