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- W2000965008 abstract "Abstract Stoichiometric constraints within ecological interactions and their ecosystem consequences may depend on characteristics of the abiotic environment such as background nutrient levels. We assessed whether consumer identity, via differing body stoichiometry, could regulate periphyton stoichiometry across nutrient regimes in open systems. In 60 flow‐through artificial streams, we factorially crossed dissolved inorganic nitrogen levels (elevated = 294 μ g L −1 , ambient = 26 μ g L −1 ) with dissolved inorganic phosphorus levels (DIP: elevated = 15 μ g L −1 , ambient = 3 μ g L −1 ) and consumer type [crayfish (body N : P = 18), snails (body N : P = 28) or a control]. At ambient DIP, periphyton in the crayfish treatment had a lower %P and a lower C : P than periphyton in the snail treatment suggesting that consumer identity, probably mediated by differing P‐excretion, regulated periphyton P content. At high DIP, consumer identity no longer affected periphyton elemental composition. Therefore, the stoichiometry of consumer‐driven nutrient recycling and consumer identity may be less important to ecosystem functioning in environments with elevated nutrient levels." @default.
- W2000965008 created "2016-06-24" @default.
- W2000965008 creator A5011288778 @default.
- W2000965008 creator A5066202864 @default.
- W2000965008 date "2006-09-27" @default.
- W2000965008 modified "2023-10-15" @default.
- W2000965008 title "Stoichiometry of consumer‐driven nutrient recycling across nutrient regimes in streams" @default.
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- W2000965008 doi "https://doi.org/10.1111/j.1461-0248.2006.00971.x" @default.
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