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首页> 外文期刊>Oikos: A Journal of Ecology >Fish-mediated indirect effects in a littoral food web
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Fish-mediated indirect effects in a littoral food web

机译:鱼在沿海食物网中的间接影响

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The strength of the direct effect by scraping cladocerans and the indirect effect of nutrient regeneration by filtering herbivorous cladocerans on periphyton growth was investigated in a littoral food web. Ten enclosures were erected in a lake in an area with artificial vegetation. Five enclosures were stocked with juvenile perch (Perca fluviatilis) and five lacked fish. In addition, a reference area in the artificial vegetation was sampled. The mesh size of the net surrounding the cages was chosen to allow an inflow of phytoplankton into the cages from the surrounding water. The periphyton and filtering herbivorous cladoceran biomasses were highest in the fish-free treatment. There was no difference in phytoplankton biomass between treatments despite the large difference in filtering herbivorous cladoceran biomass, suggesting that the inflow of phytoplankton into enclosures completely compensated for the loss due to filtering. The reference area and the enclosure with fish showed the same patterns in developments with respect to filtering herbivorous cladocerans and periphyton. Scraping cladoceran biomass was higher in the fish-free treatment resulting in a positive correlation between scraping cladoceran and periphyton biomass. Our results suggest that the positive indirect effect of filtering herbivorous cladoceran nutrient regeneration on periphyton was stronger than the negative direct effect of grazing by scraping cladocerans on periphyton in this semi-open system, and that pelagic production by phytoplankton may foster periphyton growth in the littoral habitat via filtering herbivorous cladocerans. Furthermore, heterogeneity within trophic levels involving primary producers of different growth forms such as phytoplankton and periphyton may enhance the potential for compensatory responses via nutrient recycling.
机译:在沿海食物网中,研究了刮取枝角果的直接作用强度和滤除草食性枝角菜的养分再生对围生植物生长的间接作用。在一个有人工植被的湖中竖起了十个围墙。在五个围栏里放养了幼鲈(Perca fluviatilis),还有五个没有鱼。另外,对人造植被中的参考区域进行了采样。选择网箱周围网的网眼尺寸,以使浮游植物从周围的水流入网箱。在无鱼处理中,附生植物和滤食的食蟹角藻生物量最高。尽管在过滤食草克拉科生物质方面存在很大差异,但处理之间的浮游植物生物量没有差异,这表明浮游植物流入围网完全弥补了过滤造成的损失。参考区域和带鱼的围栏在滤食草食角藻和周生植物方面显示出相同的模式。在无鱼处理中,刮取的角藻生物质较高,导致刮取的角藻生物质与浮游植物生物量之间呈正相关。我们的研究结果表明,在这种半开放系统中,过滤草食性角藻营养物质再生对周生植物的正间接作用要强于刮取角藻对草生植物的负性直接作用,而浮游植物产生的浮游上浮可能促进沿岸的周生植物生长。通过过滤食草的锁骨而生。此外,营养水平内的异质性涉及不同生长形式的主要生产者,例如浮游植物和周生植物,可能会通过营养循环利用而增强补偿性反应的潜力。

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