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首页> 外文期刊>Population ecology >Effects of increasing nutrient supply and omnivorous feeding on the size spectrum slope: a size-based nutrient-phytoplankton-zooplankton model
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Effects of increasing nutrient supply and omnivorous feeding on the size spectrum slope: a size-based nutrient-phytoplankton-zooplankton model

机译:营养物供应增加和杂食性对尺寸谱斜率的影响:基于尺寸的营养物-浮游植物-浮游动物模型

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Size spectrum slope has been considered as an indicator for system productivity and size-dependent trophic interactions in plankton communities. We investigated the effect of new nutrient flux (N_(in)) and feeding breadth of zooplankton (sigma~2) on spectral slopes of the plankton community using a size-structured nutrient-phytoplankton-zooplankton model. We studied two types of plankton systems (1) at a steady state and (2) with fluctuating plankton populations. For the steady state systems, the spectral slopes increased with N_(in) andsigma~2. In contrast, for the systems in fluctuation, spectral slopes constructed from long-term average plankton populations decreased with increasing N_(in) and sigma~2. In addition to spectral slopes constructed from long-term average population densities, we investigated slope variability in systems with fluctuating plankton populations. The variability of spectral slopes was found to increase with N_(in) and sigma~2, indicating that spectral slope variation islarge in a eutrophic system or when zooplankton feed on a wide size range of prey. Empirically, because N_(in) is difficult to measure, nutrient concentration is investigated instead. Our model predicts that the spectral slope is positively correlated with nutrient concentration due to the accumulated mesozooplankton biomass, which was confirmed by our study in plankton community in a subtropical reservoir in Taiwan.
机译:尺寸谱的斜率已被认为是浮游生物群落中系统生产力和与尺寸有关的营养相互作用的指标。我们使用大小结构化的养分-浮游植物-浮游动物模型研究了新的养分通量(N_(in))和浮游动物的摄食宽度(sigma〜2)对浮游生物群落光谱斜率的影响。我们研究了两种类型的浮游生物系统:(1)稳态和(2)浮游生物种群波动。对于稳态系统,光谱斜率随N_(in)和σ〜2的增加而增加。相反,对于处于波动中的系统,由长期平均浮游生物种群构成的光谱斜率随N_(in)和sigma〜2的增加而减小。除了由长期平均人口密度构成的频谱斜率外,我们还研究了浮游生物种群变动的系统中的斜率变异性。发现光谱斜率的变化随N_(in)和sigma〜2的增加而增加,这表明在富营养化系统中或当浮游生物以较大尺寸的猎物为食时,光谱斜率的变化较大。根据经验,由于N_(in)难以测量,因此研究了营养物浓度。我们的模型预测,由于中生浮游生物的积累,光谱斜率与营养物浓度呈正相关,这在台湾亚热带水库浮游生物群落中的研究得到了证实。

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