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Consistent nutrient storage and supply mediated by diverse fish communities in coral reef ecosystems


Description:

Author(s):
Allgeier, J. E., Layman, C. A., Mumjby, P. J., Rosemond, A. D.
Title:
Consistent nutrient storage and supply mediated by diverse fish communities in coral reef ecosystems
Publication Date:
2014
Institution:
Odum School of Ecology, University of Georgia
Journal Title:
Global Change Biology
Volume:
20
Issue:
8
Page(s):
24592472
Abstract:
"Corals thrive in low nutrient environments and the conservation of these globally imperiled ecosystems is largely dependent on mitigating the effects of anthropogenic nutrient enrichment. However, to better understand the implications of anthropogenic nutrients requires a heightened understanding of baseline nutrient dynamics within these ecosystems. Here, we provide a novel perspective on coral reef nutrient dynamics by examining the role of fish communities in the supply and storage of nitrogen (N) and phosphorus (P). We quantified fish-mediated nutrient storage and supply for 144 species and modeled these data onto 172 fish communities (71,729 individual fish), in four types of coral reefs, as well as seagrass and mangrove ecosystems, throughout the Northern Antilles. Fish communities supplied and stored large quantities of nutrients, with rates varying among ecosystem types. The size structure and diversity of the fish communities best predicted N and P supply and storage and N : P supply, suggesting that alterations to fish communities (e.g., overfishing) will have important implications for nutrient dynamics in these systems. The stoichiometric ratio (N : P) for storage in fish mass (about 8 : 1) and supply (about 20 : 1) was notably consistent across the four coral reef types (but not seagrass or mangrove ecosystems). Published nutrient enrichment studies on corals show that deviations from this N : P supply ratio may be associated with poor coral fitness, providing qualitative support for the hypothesis that corals and their symbionts may be adapted to specific ratios of nutrient supply. Consumer nutrient stoichiometry provides a baseline from which to better understand nutrient dynamics in coral reef and other coastal ecosystems, information that is greatly needed if we are to implement more effective measures to ensure the future health of the world's oceans."
Keywords:
coastal ecosystems; consumer-mediated nutrient supply; eutrophication; fish; food web; mangroves; nitrogen; phosphorus; redfield ratio; seagrass beds
Electronic DOI:
Notes:
Funding was provided by an EPA STAR Fellowship; National Science Foundation OCE 0746164; National Science Foundation OCE 1405198; and Pew and ARC Laureate Fellowships
Funding Organizations:
Environmental Protection Agency
National Science Foundation
Pew and ARC Laureate Fellowships

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