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Not All Nitrogen Is Created Equal: Differential Effects of Nitrate and Ammonium Enrichment in Coastal Wetlands

机译:并非所有氮都是平等的:硝酸盐和含氨湿地浓缩的差异影响

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摘要

Excess reactive nitrogen (N) flows from agricultural, suburban, and urban systems to coasts, where it causes eutrophication. Coastal wetlands take up some of this N, thereby ameliorating the impacts on nearshore waters. Although the consequences of N on coastal wetlands have been extensively studied, the effect of the specific form of N is not often considered. Both oxidized N forms (nitrate, NO3-) and reduced forms (ammonium, NH4+) can relieve nutrient limitation and increase primary production. However, unlike NH4+, NO3- can also be used as an electron acceptor for microbial respiration. We present results demonstrating that, in salt marshes, microbes use NO3- to support organic matter decomposition and primary production is less stimulated than when enriched with reduced N. Understanding how different forms of N mediate the balance between primary production and decomposition is essential for managing coastal wetlands as N enrichment and sea level rise continue to assail our coasts.
机译:从农业,郊区和城市系统到海岸的过量反应性氮气(n)流动,在那里它会导致富营养化。 沿海湿地占据了一些n,从而改善了对近岸水域的影响。 虽然N在沿海湿地对沿海湿地的后果进行了广泛的研究,但不经常考虑N N的特定形式的效果。 氧化N形式(硝酸盐,NO 3-)和含量减少(铵,NH 4 +)可以缓解营养限制并增加初级生产。 然而,与NH4 +不同,NO 3-也可以用作微生物呼吸的电子受体。 我们提出了证明,在盐沼中,微生物使用NO3-支持有机物分解,初级产量比富含N的浓度较低,但了解如何在初级生产和分解之间的平衡是如何管理的 沿海湿地作为N浓缩和海平面上升,继续攻击我们的海岸。

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