首页> 外文期刊>Marine biology >Differences in size distribution of marine phytoplankton in presence versus absence of jellyfish support theoretical predictions on top-down control patterns along alternative energy pathways
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Differences in size distribution of marine phytoplankton in presence versus absence of jellyfish support theoretical predictions on top-down control patterns along alternative energy pathways

机译:有水母与无水母的情况下海洋浮游植物大小分布的差异支持沿替代能源途径自上而下控制模式的理论预测

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While theoretical food web studies highlight the importance of alternative energy pathways in shaping community response to bottom-up and top-down forcing, empirical insight on the relevance of the predicted patterns is largely lacking. In marine plankton food webs differences in food size spectra between ciliates and copepods lead to alternative energy pathways, one expanding from small phytoplankton over ciliates to copepods, the other from large edible phytoplankton directly to copepods. Correspondingly, predation pressure by copepods leads to an increase of small phytoplankton through top-down control of copepods on ciliates, but to a decrease of large phytoplankton through direct predation by copepods. Hence, food web theory predicts a shift from the dominance of large to small algae along an enrichment gradient. This prediction clearly deviates from the general assumption of a shift from small fast growing to larger slow-growing phytoplankton taxa with increasing nutrient availability. However, if copepods themselves are under top-down control by strong predation through planktivores such as fish or jellyfish, dominance of large algae is expected throughout the enrichment gradient. We tested these predictions by analyzing the phytoplankton composition from numerous marine lakes and lagoon sites located on the archipelago of Palau covering a wide range of nutrient levels, comparing sites lacking large numbers of higher trophic levels with sites harboring high densities of jellyfish. The observed patterns strongly support that higher trophic levels influence the phytoplankton size distribution along a nutrient enrichment gradient, highlighting the importance of alternate energy pathways in food webs for community responses.
机译:虽然理论上的食物网研究强调了替代能源途径在塑造社区对自下而上和自上而下的强迫的反应中的重要性,但在很大程度上缺乏对预测模式的相关性的经验性见识。在海洋浮游生物的食物网中,纤毛虫和co足类食物尺寸谱的差异导致替代性能源途径,一种从纤毛虫上的小型浮游植物扩展到plan足类,另一种从大型食用浮游植物直接扩展到co足类。相应地,co足类动物的捕食压力通过对c足类动物的自上而下的控制导致小型浮游植物的增加,但是通过co足类动物的直接捕食导致大型浮游植物的减少。因此,食物网理论预测,从大型藻类到小型藻类的优势会沿着富集梯度发生变化。这种预测显然偏离了一般假设,即随着养分利用率的提高,从小规模快速生长的浮游植物类群转变为大尺寸缓慢增长的浮游植物类群。但是,如果co足类本身通过鱼类或水母等浮游动物的强捕食受到自上而下的控制,则在整个富集梯度中,预计大型藻类将占主导地位。我们通过分析帕劳群岛上众多海洋湖和泻湖中浮游植物的组成来检验这些预测,浮游植物的营养成分范围很广,将缺乏大量较高营养水平的地点与拥有高密度水母的地点进行了比较。观察到的模式有力地证明较高的营养水平会沿营养富集梯度影响浮游植物的大小分布,突出了食物网中替代性能量途径对于社区反应的重要性。

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  • 来源
    《Marine biology》 |2020年第1期|9.1-9.9|共9页
  • 作者单位

    Leibniz Inst Freshwater Ecol & Inland Fisheries Muggelseedamm 310 D-12587 Berlin Germany;

    Univ Brest Inst Univ Europeen Mer Lab Sci Environm Marin LEMAR UMR 6539 Inst Univ Europeen Mer Rue Dumont Urville F-29280 Plouzane France;

    Univ Brest Inst Univ Europeen Mer Lab Sci Environm Marin LEMAR UMR 6539 Inst Univ Europeen Mer Rue Dumont Urville F-29280 Plouzane France|Ludwig Maximilians Univ Munchen Dept Biol 2 Grosshaderner Str 2 D-82152 Planegg Martinsried Germany;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 05:13:23

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