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Influence of Food Web Structure on Carbon Exchange Between Lakes and the Atmosphere

机译:食物网结构对湖泊与大气之间碳交换的影响

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摘要

Top predators and nutrient loading in lakes were manipulated to assess the influence of food web structure on carbon flux between lakes and the atmosphere. Nutrient enrichment increased primary production, causing lakes to become net sinks for atmospheric carbon (C_(atm)). Changes in top predators caused shifts in grazers. At identical nutrient loading, C_(atm) invasion was greater to a lake with low grazing than to one with high grazing. Carbon stable-isotope distributions corroborated the drawdown of lake carbon dioxide and traced C_(atm) transfer from algae to top predators. Thus, top predators altered ecosystem carbon fixation and linkages to the atmosphere.
机译:操纵湖泊中的主要掠食者和养分含量,以评估食物网结构对湖泊与大气之间碳通量的影响。营养富集增加了初级生产力,使湖泊变成了大气中碳的净汇(C_(atm))。顶级掠食者的变化导致放牧者的转移。在养分含量相同的情况下,低放牧湖的C_(atm)入侵要大于高放牧湖的C_(atm)入侵。碳稳定同位素的分布证实了湖中二氧化碳的减少,并追踪了从藻类到顶级捕食者的C_(atm)转移。因此,顶级掠食者改变了生态系统的碳固定和与大气的联系。

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