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Using the aquatic macrophyte Vallisneria americana (wild celery) as a nutrient bioindicator

机译:使用水生大型植物美洲苦瓜作为营养生物指示剂

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Human sewage and septic waste are significant sources of nutrient loading to many aquatic ecosystems. Ecologically relevant nitrogen sources can be traced by analyzing nitrogen stable isotope ratios (δ15N signatures) in aquatic plants. Elevated δ15N signatures can suggest increased uptake of nitrogen derived from human and/or animal waste. In the current study, Vallisneria americana, a freshwater angiosperm, was collected from several locations in Upper Saranac Lake, NY, USA. Samples were also collected from Lake George, NY and the Sassafras River, MD, USA. Plant material was analyzed for δ15N and % N; some samples were also analyzed for δ13C, % C, and % P. Results suggest that there is variation in septic inputs to Upper Saranac Lake, with some areas of the lake receiving more input than others. Results also show that increased watershed population density is correlated with elevated δ15N signatures of Vallisneria americana. Taken together, these results suggest that nitrogen stable isotope analysis of aquatic plant tissue is an effective method for assessing and monitoring septic inputs to freshwater ecosystems.
机译:人类污水和化粪池是许多水生生态系统中养分负载的重要来源。通过分析水生植物中氮的稳定同位素比率(δ 15 N标记)可以追溯到与生态相关的氮源。升高的δ 15 N信号提示人类和/或动物粪便中氮的吸收增加。在当前的研究中,淡水被子植物美洲缬草是从美国纽约州上萨拉那克湖的多个地点收集的。还从纽约州的乔治湖和美国马里兰州的萨萨弗拉斯河采集了样品。分析植物材料中的δ 15 N和%N;还分析了一些样品的δ 13 C,%C和%P。结果表明,上萨拉那克湖的化粪池输入量有所变化,该湖的某些区域比其他区域接收的输入更多。研究结果还表明,流域人口密度的增加与美国苦参的δ 15 N信号增强相关。综上所述,这些结果表明水生植物组织的氮稳定同位素分析是评估和监测对淡水生态系统的化粪输入的有效方法。

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