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The influence of nutrient enrichment on riverine food web function and stability

机译:养分富集对河流食品网功能及稳定性的影响

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摘要

Nutrient enrichment of rivers and lakes has been increasing rapidly over the past few decades, primarily because of agricultural intensification. Although nutrient enrichment is known to drive excessive algal and microbial growth, which can directly and indirectly change the ecological community composition, the resulting changes in food web emergent properties are poorly understood. We used ecological network analysis (ENA) to examine the emergent properties of 12 riverine food webs across a nutrient enrichment gradient in the Manawatu, New Zealand. We also derive Keystone Sensitivity Indices to explore whether nutrients change the trophic importance of species in a way that alters the resilience of the communities to further nutrient enrichment or floods. Nutrient enrichment resulted in communities composed of energy inefficient species with high community (excluding microbes) respiration. Community respiration was several times greater in enriched communities, and this may drive hypoxic conditions even without concomitant changes in microbial respiration. Enriched communities exhibited weaker trophic cascades, which may yield greater robustness to energy flow loss. Interestingly, enriched communities were also more structurally and functionally affected by species sensitive to flow disturbance making these communities more vulnerable to floods.
机译:在过去的几十年里,河流和湖泊的营养丰富已经迅速增加,主要是因为农业强化。虽然已知营养富集驱动过量的藻类和微生物生长,但是可以直接和间接地改变生态群落组成,所产生的食物腹带特性的变化很差。我们使用了生态网络分析(ENA)来检查新西兰马纳瓦图的营养丰富梯度12河内食物网的紧急性质。我们还衍生梯形敏感性指数来探索营养素是否改变了物种的营养性重要性,这使得社区的恢复能力以进一步的营养丰富或洪水。营养丰富导致社区由高群落(不包括微生物)呼吸的能量低效组成。社区呼吸在富集的社区中有几次更大,即使在没有伴随的微生物呼吸的情况下也可能导致缺氧条件。丰富的社区表现出较弱的营养级联,这可能会对能量流失损失产生更大的鲁棒性。有趣的是,丰富的社区也在结构上和功能上受到对流动障碍敏感的物种影响,使这些社区更容易受到洪水。

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