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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Could increased cyanobacterial biomass following forest harvesting cause a reduction in zooplankton body size structure?
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Could increased cyanobacterial biomass following forest harvesting cause a reduction in zooplankton body size structure?

机译:森林采伐后增加的蓝藻生物量会导致浮游动物体型结构的减少吗?

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摘要

Changes in phytoplankton and zooplankton communities were studied in 16 lake-years during a large-scale experimental before-after study as part of the Terrestrial Riparian Organisms Lakes and Streams (TROLS) project. After forest harvesting, phytoplankton biomass and especially cyanobacterial biomass increased in some of the experimental lakes, up to an order of magnitude. Although the response of phytoplankton was not directly related to the intensity of forest harvesting, this large-scale experiment provided a unique opportunity for studying the effects of an increasing gradient in cyanobacterial biomass on zooplankton communities. Cladoceran size structure and biomass were negatively correlated with cyanobacterial biomass, suggesting that large cladocerans and especially daphnids were inhibited by the increase in cyanobacterial biomass. The increase in cyanobacterial biomass seems to have caused a significant reduction in the size structure of zooplankton communities. As no correlation was foundbetween cladocerans and cyanotoxins, our results point more towards feeding inhibition by filamentous and colonial cyanobacteria as a possible cause for the decline in the size structure and biomass of zooplankton communities. These results suggest thatthe increase in cyanobacterial biomass is likely to cause a shift in the size of zooplankton communities, which will lead to a profound change in functioning of lake systems.
机译:作为陆生河岸生物湖泊和溪流(TROLS)项目的一部分,在大规模实验前后研究中,在16个湖年中研究了浮游植物和浮游动物群落的变化。砍伐森林后,一些实验湖泊的浮游植物生物量,尤其是蓝细菌生物量增加了一个数量级。尽管浮游植物的反应与森林采伐强度没有直接关系,但这项大规模实验为研究蓝藻生物量梯度增加对浮游动物群落的影响提供了独特的机会。枝角藻的大小结构和生物量与蓝藻生物量呈负相关,表明大型枝角藻,特别是水蚤,受到蓝藻生物量的增加的抑制。蓝藻生物量的增加似乎已导致浮游动物群落大小结构的显着减少。由于在锁骨和藻毒素之间未发现相关性,我们的结果更多地指向丝状和菌落蓝细菌对饲料的抑制,这可能是导致浮游动物群落大小结构和生物量下降的原因。这些结果表明,蓝藻生物量的增加很可能引起浮游动物群落大小的变化,这将导致湖泊系统功能的深刻变化。

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