Non-trophic Interactions Control Benthic Producers on Intertidal Flats

被引:0
|
作者
Serena Donadi
Joëlle Westra
Ellen J. Weerman
Tjisse van der Heide
Els M. van der Zee
Johan van de Koppel
Han Olff
Theunis Piersma
Henk W. van der Veer
Britas Klemens Eriksson
机构
[1] University of Groningen,Department of Marine Benthic Ecology and Evolution, Centre for Ecological and Evolutionary Studies (CEES)
[2] University of Groningen,Community and Conservation Ecology Group, Centre for Ecological and Evolutionary Studies (CEES)
[3] University of Groningen,Animal Ecology Group, Centre for Ecological and Evolutionary Studies (CEES)
[4] Royal Netherlands Institute for Sea Research (NIOZ),Department of Marine Ecology
[5] Royal Netherlands Institute for Sea Research (NIOZ),Spatial Ecology Department
来源
Ecosystems | 2013年 / 16卷
关键词
ecosystem engineering; facilitation; hydrodynamic stress; microphytobenthos; Wadden Sea;
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中图分类号
学科分类号
摘要
The importance of positive effects of ecosystem engineers on associated communities is predicted to increase with environmental stress. However, incorporating such non-trophic interactions into ecological theory is not trivial because facilitation of associated species is conditional on both the type of engineer and the type of abiotic stress. We tested the influence of two allogenic ecosystem engineers (lugworms, Arenicola marina L. and cockles, Cerastoderma edule L.) on the main primary producers (microphytobenthos) of the tidal flats, under different abiotic stresses controlled by reefs of blue mussels (Mytilus edulis L.). We added 25,000 cockles or 2,000 lugworms to 5 × 5 m plots, both in a muddy site with high sedimentation rates located coastward of a mussel bed, and in a sandy site without mussels and characterized by high hydrodynamic stress. After a year, cockles increased algal biomass in the sandy area, but not in the mussel bed site, where high values were measured in all plots. However, lugworms did not affect algal biomass in any of the sites. Field measurements suggest that cockles outweighed negative effects of water currents in the site without mussels by locally increasing sediment stability, whereas mussels overruled the effects of cockles in the wake of the reefs through hydrodynamic stress alleviation and/or biodeposition. Our results suggest that non-trophic interactions by ecosystem engineering bivalves control primary production of intertidal areas, and that the sediment-stabilizing effect of cockles plays a crucial role where the overruling effects of mussel beds are not present.
引用
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页码:1325 / 1335
页数:10
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