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首页> 外文期刊>The Journal of Applied Ecology >Top-down control as important as nutrient enrichment for eutrophication effects in North Atlantic coastal ecosystems
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Top-down control as important as nutrient enrichment for eutrophication effects in North Atlantic coastal ecosystems

机译:自上而下的控制养分一样重要浓缩在北富营养化的影响大西洋沿海生态系统

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Seagrass and seaweed habitats constitute hotspots for diversity and ecosystem services in coastal ecosystems. These habitats are subject to anthropogenic pressures, of which eutrophication is one major stressor. Eutrophication favours fast-growing ephemeral algae over perennial macroalgae and seagrasses, causing habitat degradation. However, changes in top-down control, caused by, for example, overfishing, may also have negative impacts on such habitats by decreasing grazer control of ephemeral algae. Meanwhile, systematic analyses estimating top-down effects of predator manipulations across a wide range of studies are missing, limiting the potential use of top-down control measures in coastal management. Here, we review the literature on experiments that test top-down and bottom-up controls in seagrass Zostera marina and seaweed Fucus spp. food webs in the North Atlantic. Using meta-analysis and meta-regression, we compare effect sizes of consumer and nutrient manipulations on primary producers, grazers and mesopredators. Presence of mesopredators on average doubled the biomass of ephemeral algae through trophic cascades, mainly mediated via negative effects on amphipods and isopods. Of the grazers, gastropods had twice as strong a negative effect on ephemeral algae as amphipods/isopods, but responded weakly to both predators and fertilization. In accordance with theory, top-down effects became stronger with eutrophication. Across studies, top-down effects on ephemeral algae at all trophic levels are on par with eutrophication effects. However, the few studies manipulating piscivorous fish make estimates of their top-down effects uncertain.Synthesis and applications. Consistently strong top-down effects in coastal ecosystems call for an integrated ecosystem perspective. Management should consider measures to improve stocks of predatory fish and reduce mesopredators for restoration and conservation of essential seagrass and seaweed habitats, thereby increasing the long-term viability of ecosystem services from coastal habitats.
机译:海草和海藻栖息地组成的热点地区在沿海的多样性和生态系统服务生态系统。人为压力,富营养化是一个主要的压力源。快速增长的短暂的多年生藻类macroalgae和海草,造成的栖息地退化。控制,造成的,例如,过度捕捞,阿美也有负面影响在这样的栖息地减少食草动物短暂的藻类的控制。与此同时,系统的分析评估自上而下的影响捕食者操作广泛的研究缺失,限制潜在的使用自上而下的控制措施沿海管理。自顶向下和文献实验测试自下而上的控制在海草目前海带岩藻种虫害在北方食物网大西洋。多元回归,我们比较大小的影响消费者和养分主要操作生产商,食草动物和mesopredators。mesopredators平均生物量的增加了一倍主要是短暂的藻类在营养级联通过对端和负面影响等足类动物。强烈的负面影响在短暂的藻类片脚类/等足类动物,但反应弱捕食者和受精。理论,自上而下的影响变得更强富营养化。在短暂的藻类营养水平与富营养化的影响。研究操纵食鱼的鱼估计他们的自上而下的影响不确定的。在沿海持续强劲的自上而下的影响生态系统要求一个完整的生态系统视角。改善的食肉鱼类和减少库存mesopredators修复和保护必要的海草和海藻的栖息地,从而增加生态系统的长期生存能力服务从沿海的栖息地。

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