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首页> 外文期刊>The Journal of Applied Ecology >The frequency and magnitude of non-additive responses to multiple nutrient enrichment
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The frequency and magnitude of non-additive responses to multiple nutrient enrichment

机译:非附加的频率和大小应对多个营养浓缩

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摘要

Anthropogenic eutrophication is among the greatest threats to ecosystem functioning globally, often occurring via enrichment of both nitrogen (N) and phosphorus (P). As such, recent attention has focused on the implications of non-additive responses to dual nutrient enrichment and the inherent difficulty associated with predicting their combined effects. 2We used a simple metric to quantify the frequency and magnitude of non-additive responses to enrichment by N, P and N + P in 653 experiments conducted across multiple ecosystem types and locations. 3Non-additive responses were found to be common in all systems. Freshwater ecosystems and temperate latitudes tended to have frequent synergistic responses to dual nutrient enrichment, i.e. the response was greater than predicted by an additive model. Terrestrial and arctic systems were dominated by antagonistic responses (responses to N + P that were less than additive). 4The mean of all experiments was synergistic because despite being less common, synergistic responses were generally of greater magnitude than antagonistic ones. 5Synthesis and applications. Our study highlights the ubiquity of non-additive effects in response to dual nutrient enrichment and further elucidates the complex ways in which ecosystems respond to human impacts. Our results suggest how alternative nutrient limitation scenarios can be used to guide approaches to conservation and management of nutrient loading to ecosystems. This review provides the first published summary of non-additive responses by primary producers.
机译:人为富营养化是最大的之一经常威胁全球生态系统功能,发生通过浓缩氮(N)和磷(P)。因此,最近的关注关注非附加的意义反应双重营养浓缩和固有的困难与预测有关他们的联合效应。量化的频率和大小非附加反应浓缩的N, P和N + P 653年的实验多个生态系统类型和位置。3非附加反应被发现是常见的在所有系统。温带往往频繁协同反应双重营养浓缩,即响应大于由加性模型预测。北极系统由敌对反应(反应N + P小于添加剂)。协同,因为尽管是不常见,协同反应通常是更大的大小比敌对的。应用程序。针对双非附加影响营养丰富,进一步论述了生态系统对人类复杂的方式影响。可用于营养限制的场景指导方法来保护和管理生态系统的营养负荷。提供了首次出版的总结非附加响应的主要生产商。

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