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Stable nitrogen isotopes in coastal macroalgae: Geographic and anthropogenic variability

机译:沿海大型藻类中稳定的氮同位素:地理和人为变异

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Growing human population adds to the natural nitrogen loads to coastal waters. Both anthropogenic and natural nitrogen is readily incorporated in new biomass, and these different nitrogen sources may be traced by the measurement of the ratio of stable nitrogen isotopes (δ~(15)N). In this study δ~(15)N was determined in two species of macroalgae (Ascophyllum nodosum and Fucus vesiculosus), and in nitrate and ammonium to determine the relative importance of anthropogenic versus natural sources of nitrogen along the coast of NW Spain. Both algal species and nitrogen sources showed similar isotopic enrichment for a given site, but algal δ~(15)N was not related to either inorganic nitrogen concentrations or δ~(15)N in the water samples. The latter suggests that inorganic nitrogen inputs are variable and do not always leave an isotopic trace in macroalgae. However, a significant linear decrease in macroalgal δ~(15)N along the coast is consistent with the differential effect of up-welling. Besides this geographic variability, the influence of anthropogenic nitrogen sources is evidenced by higher δ~(15)N in macroalgae from rias and estuaries compared to those from open coastal areas and in areas with more than 15 × 10~3 inhabitants in the watershed. These results indicate that, in contrast with other studies, macroalgal δ~(15)N is not simply related to either inorganic nitrogen concentrations or human population size but depends on other factors as the upwelling or the efficiency of local waste treatment systems.
机译:人口的增长增加了沿海水域的自然氮负荷。人为氮和天然氮都容易掺入新的生物量中,这些不同的氮源可通过测量稳定氮同位素(δ〜(15)N)的比例来追踪。在这项研究中,在两个大型藻类(Ascophyllum nodosum和Fucus vesiculosus)以及硝酸盐和铵中测定了δ〜(15)N,以确定西班牙西北海岸人为与自然氮源的相对重要性。对于给定的位置,藻类物种和氮源都显示出相似的同位素富集,但是藻类中的δ〜(15)N与水中样品中的无机氮浓度或δ〜(15)N无关。后者表明无机氮输入是可变的,并不总是在大型藻类中留下同位素痕迹。然而,沿海岸大型藻类δ〜(15)N的线性显着下降与上升流的微分效应是一致的。除了这种地理上的可变性之外,人为氮源的影响还可以通过来自rias和河口的大型藻类中的δ〜(15)N值高于沿海开放地区和流域中超过15×10〜3个居民的地区来证实。这些结果表明,与其他研究相比,大型藻类的δ〜(15)N不仅与无机氮浓度或人口规模无关,而且还取决于其他因素,如当地废物处理系统的上涌或效率。

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