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Effects of light, nutrients, and food chain length on trophic efficiencies in simple stoichiometric aquatic food chain models

机译:光,营养和食物链长度对简约化学计量水产食品链模型中营养效率的影响

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Ecological trophic transfer efficiencies can provide meaningful measures of ecosystem function. Light levels, nutrient availability, and food chain length impact ecological interactions and can cause elemental imbalances between trophic levels which may lead to stoichiometric constraints on food chain efficiencies. Despite the important role that the chemical composition of primary producers and food quality plays in determining consumer productivity, most food chain models used to evaluate trophic transfer efficiencies neglect stoichiometric constraints. This study presents simple stoichiometric models of two and three trophic levels and investigates the effects of light and nutrient availability on ecological transfer efficiencies. The models predict that food chain efficiency is reduced when consumers are nutrient limited. Nutrient levels such that the primary producer and consumer have similar stoichiometric compositions provide conditions for high food chain efficiency. In fixed low nutrient environments, food chain efficiency is highest in light level conditions such that the primary producer and consumer have similar stoichiometric compositions. In fixed high nutrient environments, food chain efficiency is highest for intermediately low light levels such that the phosphorus:carbon ratio of the primary producer is higher than the phosphorus:carbon ratio of the consumer. Food chain efficiency is lower in tritrophic food chains than ditrophic food chains and consumer efficiency is lower in the presence of predation constraints. It is essential for future models to consider light and nutrient availability and the consequential stoichiometric constraints when predicting how energy and elements transfer across trophic levels and up food chains. (C) 2015 Elsevier B.V. All rights reserved.
机译:生态营养转移效率可以提供有意义的生态系统函数措施。光线水平,营养可用性和食物链长度影响生态相互作用,可引起营养水平之间的元素不平衡,这可能导致对食物链效率的化学计量约束。尽管初级生产者和食品质量的化学成分在确定消费者生产力方面发挥着重要作用,但用于评估营养转移效率的大多数食物链模型忽视了化学计量约束。本研究提出了两三种营养水平的简单化学计量模型,并研究了光和养分可用性对生态转移效率的影响。当消费者营养有限时,模型预测食品链效率降低。营养水平使得初级生产者和消费者具有类似的化学计量组合物,为高食物链效率提供条件。在固定的低营养环境中,光水平条件下的食物链效率最高,使得初级生产者和消费者具有类似的化学计量组合物。在固定的高营养环境中,对于中间低光水平的食物链效率最高,使得磷:初级生产商的碳比高于磷:消费者的碳比。在脱孔食物链中,食物链效率低于缺乏源食物链,并且在捕食约束的情况下消费效率降低。在预测途中的能量和元素转移以及食物链上的能量和元素转移时,将考虑光线和养分可用性和后续化学计量约束是必不可少的。 (c)2015 Elsevier B.v.保留所有权利。

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