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Biomass size spectra and plankton diversity in a shallow eutrophic lake

机译:浅水富营养化湖泊中的生物量谱和浮游生物多样性

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Biomass size spectra collate structural and functional attributes of plankton communities enabling standardised temporal and cross-system comparisons and may be rapidly obtained by automated particle counters. To examine how differences in plankton communities from highly eutrophic and more oligotrophic lakes are reflected in size spectra, a three-year time series of biomass size spectra was established for polymictic, eutrophic Lake Maggelsee, based on approximately weekly sampling and microscopic enumeration. The continuous but often bumpy size spectra reflected appropriately the seasonal and trophy-related variations in the plankton composition and growth conditions and the potential impact of daphnids on smaller plankton. We tested the hypothesis that more diverse plankton communities have smoother size spectra than impoverished ones. The spectra of Lake Muggelsee and other more or less eutrophic lakes covaried roughly with the functional diversity in total plankton composition but were unrelated to taxonomical diversity within the phyto- or mesozooplankton. The slopes of the normalised size spectra of Lake Muggelsee were generally more negative than -1, exhibited a recurrent seasonal pattern and were strongly correlated with crustacean biomass. In contrast to less eutrophic systems, slopes could not be used to quantify energy fluxes within the food web due to highly variable algal P/B ratios and frequently bumpy size distributions. The latter indicated stronger deviations from the ideal concept of a steady energy flow along the size gradient than found in e.g. large, mesotrophic Lake Constance.
机译:生物质尺寸谱整理浮游生物群落的结构和功能属性,从而实现标准化的时间和跨系统比较,并可以通过自动粒子计数器快速获得。为了检查高度富营养化湖和富营养化富营养化湖泊中浮游生物群落的差异如何在大小光谱中反映出来,基于大约每周一次的采样和微观枚举,为多微生物,富营养化的Maggelsee湖建立了三年时间序列的生物量大小光谱。连续但经常颠簸的尺寸光谱适当地反映了浮游生物组成和生长条件的季节性变化和与奖杯有关的变化,以及水蚤对较小浮游生物的潜在影响。我们检验了以下假设:与贫穷的浮游生物相比,更多的浮游生物群落具有更平滑的尺寸谱。 Muggelsee湖和其他或多或少富营养化湖泊的光谱与总浮游生物组成的功能多样性大致相关,但与植物或中游浮游动物的生物分类多样性无关。 Muggelsee湖的归一化尺寸谱的斜率通常比-1负,表现出周期性的季节性变化,并且与甲壳类生物量密切相关。与富营养度较低的系统相反,由于藻类P / B比率高度可变且尺寸分布频繁颠簸,因此无法使用斜率来量化食物网内的能量通量。后者表明与沿着尺寸梯度的稳定能量流的理想概念相比,例如在图5中发现的偏离更大。大而中营养的康斯坦茨湖。

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