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Transfer efficiency of carbon nutrients and polyunsaturated fatty acids in planktonic food webs under different environmental conditions

机译:在不同环境条件下氏菌食品网中碳营养和多不饱和脂肪酸的转移效率

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摘要

The trophic transfer efficiency (TTE) is an important indicator of ecosystem functioning. However, TTE data from freshwater food webs are ambiguous due to differences in time scales and methods. We investigated the transfer of essential substances (carbon, nutrients, and polyunsaturated fatty acids) through plankton communities in 30 Polish lakes with different trophic status in the middle of summer. The results of our study revealed that different essential substances were transferred from phytoplankton to zooplankton with varying efficiencies. The average TTE of C, N, P, and the sum of ω‐3 PUFA were 6.55%, 9.82%, 15.82%, and 20.90%, respectively. Our results also show a large mismatch between the elemental and biochemical compositions of zooplankton and their food during the peak of the summer stagnation, which may further promote the accumulation of essential substances. There were also large differences in TTEs between trophic conditions, with the highest efficiencies in oligotrophic lakes and the lowest in dystrophic and eutrophic lakes. Therefore, our study indicates that disturbances like eutrophication and dystrophication similarly decrease the TTE of essential substances between phytoplankton and zooplankton in freshwater food webs.
机译:营养转移效率(TTE)是生态系统功能的重要指标。然而,由于时间尺度和方法的差异,来自淡水食品纤维网的TTE数据是模糊的。我们调查了在夏季中间的30个波兰湖泊中的30波兰湖泊中的必需物质(碳,营养物和多不饱和脂肪酸)的转移。我们的研究结果表明,不同的基本物质从浮游植物转移到浮游植物,随着不同的效率。 C,N,P的平均TTE和ω-3 PUFA的总和分别为6.55%,9.82%,15.82%和20.90%。我们的结果还显示出在夏季停滞峰值期间浮游动物和食物的元素和生化组合物之间的巨大不匹配,这可能进一步促进基本物质的积累。在营养疾病之间的TTE之间存在巨大差异,寡营养湖泊效率最高,营养不良和营养不良湖泊中最低。因此,我们的研究表明,富营养化和中等剂等紊乱类似地降低了淡水食品网的浮游植物和浮游动物之间的必需物质的TTE。

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