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Unbalanced reduction of nutrient loads has created an offshore gradient from phosphorus to nitrogen limitation in the North Sea

机译:营养盐负荷的不平衡减少在北海造成了从磷到氮限制的近海梯度

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摘要

Measures to reduce eutrophication have often led to a more effective decline of phosphorus (P) than nitrogen (N) concentrations. The resultant changes in riverine nutrient loads can cause an increase in the N : P ratios of coastal waters. During four research cruises along a 450 km transect, we investigated how reductions in nutrient inputs during the past 25 yr have affected nutrient limitation patterns in the North Sea. This revealed a strong offshore gradient of dissolved inorganic N : P ratios in spring, from 375 : 1 nearshore toward 1 : 1 in the central North Sea. This gradient was reflected in high nearshore N : P and C : P ratios of particulate organic matter (mainly phytoplankton), indicative of severe P deficiency of coastal phytoplankton, which may negatively affect higher trophic levels in the food web. Nutrient enrichment bioassays performed on-board showed P and Si limitation of phytoplankton growth nearshore, co-limitation of N and P in a transitional region, and N limitation in the outer-shore waters, confirming the existence of an offshore gradient from P to N limitation. Different species were limited by different nutrients, indicating that further reductions of P loads without concomitant reductions of N loads will suppress colonial Phaeocystis blooms, but will be less effective in diminishing harmful algal blooms by dino- and nanoflagellates. Hence, our results provide evidence that de-eutrophication efforts in northwestern Europe have led to a large imbalance in the N : P stoichiometry of coastal waters of the North Sea, with major consequences for the growth, species composition, and nutritional quality of marine phytoplankton communities.
机译:减少富营养化的措施通常导致磷(P)比氮(N)浓度更有效的下降。河流养分负荷的最终变化可能导致沿海水域氮磷比增加。在沿着450公里断面的四次研究航行中,我们调查了过去25年中养分输入的减少如何影响北海养分限制模式。这表明春季春季溶解的无机N:P比率的离岸梯度很强,从近岸的375:1到北海中部的1:1。这种梯度反映在近海颗粒有机物(主要是浮游植物)的N:P和C:P比值较高,表明沿海浮游植物严重缺乏P,这可能会对食物网中较高的营养水平产生负面影响。在船上进行的营养富集生物测定表明,近海浮游植物生长的P和Si限制,过渡区域N和P的共限制以及近岸水域的N限制,证实了从P到N的近海梯度存在局限性。不同物种受到不同养分的限制,这表明P含量的进一步降低而不N含量的降低将抑制殖民性囊藻的繁殖,但在减少藻类和纳米鞭毛藻类的有害藻繁殖方面效果不佳。因此,我们的结果提供了证据,表明欧洲西北部的富营养化工作已导致北海沿岸N:P化学计量的巨大失衡,对海洋浮游植物的生长,物种组成和营养质量产生了重大影响社区。

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