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Oceanic nitrogen reservoir regulated by plankton diversity and ocean circulation

机译:海洋氮储集层受浮游生物多样性和海洋环流的调节

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摘要

The average nitrogen-to-phosphorus ratio of marine phytoplankton (16N:1P) is closely matched to the nutrient content of mean ocean waters (14.3N:1P). This condition is thought to arise from biological control over the ocean's nitrogen budget, in which removal of bioavailable nitrogen by denitrifying bacteria ensures widespread selection for diazotrophic phytoplankton that replenish this essential nutrient when it limits the growth of other species. Here we show that in the context of a realistic ocean circulation model, and a uniform N:P ratio of plankton biomass, this feedback mechanism yields an oceanic nitrate deficit more than double its observed value. The critical missing phenomenon is diversity in the metabolic N:P requirement of phytoplankton, which has recently been shown to exhibit large-scale patterns associated with species composition. When we model these variations, such that diazotrophs compete with high N:P communities in subtropical regions, the ocean nitrogen inventory rises and may even exceed the average N:P ratio of plankton. The latter condition, previously considered impossible, is prevented in the modern ocean by shallow circulations that communicate stoichiometric signals from remote biomes dominated by diatoms with low N:P ratios. Large-scale patterns of plankton diversity and the circulation pathways connecting them are thus key factors determining the availability of fixed nitrogen in the ocean.
机译:海洋浮游植物的平均氮磷比(16N:1P)与平均海水的营养含量(14.3N:1P)紧密匹配。人们认为这种情况是由于对海洋氮预算的生物控制而引起的,其中通过反硝化细菌去除生物可利用氮确保了重氮营养性浮游植物的广泛选择,从而限制了其他物种的生长,从而补充了这种必需营养素。在这里,我们表明,在一个现实的海洋环流模型的背景下,浮游生物质的N:P比率均匀,这种反馈机制产生的海洋硝酸盐亏缺量是其观测值的两倍以上。关键的缺失现象是浮游植物代谢N:P需求的多样性,最近已显示出与物种组成有关的大规模模式。当我们对这些变化建模时,以致重氮营养菌与亚热带地区的高N:P群落竞争时,海洋氮素库存增加,甚至可能超过浮游生物的平均N:P比。后者被认为是不可能的,但在现代海洋中,通过浅层环流可以防止这种情况发生,因为浅层环流传达了以低N:P比的硅藻为主的偏远生物群落的化学计量信号。因此,浮游生物多样性的大范围格局和连接它们的循环路径是决定海洋中固定氮可用性的关键因素。

著录项

  • 来源
    《Nature》 |2012年第7416期|p.419-422|共4页
  • 作者

    Thomas Weber; Curtis Deutsch;

  • 作者单位

    University of California Los Angeles, Los Angeles, California 90095, USA;

    University of California Los Angeles, Los Angeles, California 90095, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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