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Refuge increases food chain length: modeled impacts of littoral structure in lake food webs

机译:避难所增加了食物链长度:湖泊食品网中沿海结构的模型影响

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Food chain length (FCL) represents a fundamental metric within ecology because it has implications for ecosystem function and responses to environmental change. Omnivory between linked food chains situated within large ecosystems can increase FCL, whereas overlap of food chains within small or spatially compressed ecosystems is generally thought to decrease FCL. Yet FCL varies widely in small ecosystems and the mechanisms underlying determinants of FCL in these systems is unclear. In small shallow lakes, littoral structure is a predictor of FCL but it is unclear whether this is due to productivity or refuge mechanisms. Here we provide evidence, using consumer resource food web modules parameterized with empirical data, that refuge in spatially compressed ecosystems has the ability on its own to increase the trophic position of top predators by increasing the biomass of top and intermediate predators across a range of common food web module structures. Our results suggest that refuge is an important driver of FCL in small ecosystems, which has implications for determining responses of these systems to environmental change.
机译:食物链长度(FCL)代表生态学中的基本度量,因为它对生态系统功能有影响并对环境变化的反应。位于大型生态系统内的连接食物链之间的素状可能会增加FCL,而小或空间压缩的生态系统内的食物链重叠通常被认为减少FCL。然而,FCL在小型生态系统中变化广泛,这些系统中FCL决定簇的机制尚不清楚。在小浅水湖中,沿着沿着FCL的预测器,但目前尚不清楚这是由于生产率或避难机制。在这里,我们提供了使用经过经验数据的消费者资源食品Web模块的证据,在空间压缩的生态系统中的避难所具有自己的能力,通过增加顶部和中间捕食者的生物量来增加顶级捕食者的营养位置食品网模块结构。我们的结果表明,避难所是小生态系统中FCL的重要驾驶员,这有助于确定这些系统对环境变化的反应。

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