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Retention of N and P by zebra mussels (Dreissena polymorpha Pallas) and its quantitative role in the nutrient budget of eutrophic Lake Ekoln, Sweden

机译:斑马贻贝(Dreissena polymorpha Pallas)对氮和磷的保留及其在富营养化的瑞典埃科恩湖养分收支中的定量作用

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We quantified cover, population densities, size distribution and biomass of zebra mussels along 7 transects in eutrophic Lake Ekoln (Sweden). We also analyzed the elemental (C, N, P) composition of zebra mussel soft tissue and computed their retention rates of N and P their quantitative role in the lake’s nutrient budget. We hypothesized that zebra mussels play an important role in the nutrient budget of the lake and speculate that the successive harvesting of cultured mussels could contribute to the lake’s rate of recovery from cultural eutrophication. At depths exceeding 5 m, mussels covered consistently less than 5% or were absent. Similarly, mean densities were 3,158 ± 2,143 ind m−2 between 2 and 4 m, but rapidly declined at larger depths. Calculated clearance rates averaged 19.4 ± 2.3 km3 y−1, implying the entire lake is filtered every 8–10 days. Concentrations of N and P in mussel soft tissue averaged 100.9 ± 1.5 mg N g−1 DW and 9.3 ± 0.2 mg P g−1 DW. The lake population was estimated to 22.2 ± 2.6 × 1010 mussels, corresponding to a standing stock biomass of 362 ± 42 ton DW, or conservative estimates of 36.6 ± 4.3 ton N and 3.4 ± 0.4 ton P. Assuming a life span of 2–3 years gives a retention estimate of 1.2–1.8 ton P y−1 by mussels, corresponding to 50–77% of the annual P influx from Uppsala sewage treatment plant to the lake. Similarly, annual N-retention by zebra mussels makes up 13–20 ton N y−1, largely equaling the annual N-deposition from atmospheric sources on the lake’s surface. These retention rates correspond to only a few percent of the annual P-load from agricultural sources, but we argue that the quantitative role of zebra mussels in nutrient budgets is much larger if these budgets are adjusted for the bias introduced by coarse estimates of N and P pools that include a large share of refractory P.
机译:我们量化了富营养化的埃科恩湖(瑞典)沿7个样带的斑马贻贝的覆盖率,种群密度,大小分布和生物量。我们还分析了斑马贻贝软组织的元素(碳,氮,磷)组成,并计算了氮和磷的保留率以及它们在湖泊养分收支中的定量作用。我们假设斑马贻贝在湖泊的养分收支中起着重要作用,并推测相继收获养殖的贻贝可以促进湖泊从富营养化中恢复的速度。在深度超过5 m时,贻贝覆盖率始终小于5%或不存在。同样,平均密度在2至4 m之间为3,158±2,143 ind m −2 ,但在较大深度处迅速下降。计算出的清除率平均为19.4±2.3 km 3 y -1 ,这意味着整个湖泊每8-10天被过滤一次。贻贝软组织中氮和磷的平均含量为100.9±1.5 mg N g -1 DW和9.3±0.2 mg P g -1 DW。湖泊人口估计为22.2±2.6×10 10 贻贝,对应于362±42吨DW的常备生物量,或保守估计为36.6±4.3吨氮和3.4±0.4吨P。假设寿命为2–3年,贻贝的保留估计值为1.2–1.8吨P y −1 ,相当于每年从Uppsala污水处理厂流入Py的50-77%。湖。同样,斑马贻贝的年固氮量为13-20吨N y -1 ,基本等于湖泊表面大气源的年固氮量。这些保留率仅相当于每年来自农业的P负荷的百分之几,但是我们认为,如果针对氮素和氮的粗略估算所引入的偏差进行调整,则斑马贻贝在营养素预算中的定量作用会更大。包含大量耐火P的P池

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