Effects of food-web structure on the quantity and the elemental quality of sedimenting material in shallow lakes

被引:0
|
作者
Michael Danger
Béatrice Allard
Mohamad B. Arnous
Jean-François Carrias
Jacques Mériguet
Loïc Ten-Hage
Gérard Lacroix
机构
[1] Laboratory Interactions Between Ecotoxicology,Department of Botany, Faculty of Sciences
[2] Biodiversity,undefined
[3] and Ecosystems (LIEBE),undefined
[4] Université Paul Verlaine – METZ (UPVM),undefined
[5] UMR CNRS 7146,undefined
[6] Laboratoire Bioemco,undefined
[7] UMR CNRS 7618 (CNRS,undefined
[8] UPMC,undefined
[9] ENS,undefined
[10] AgroParisTech,undefined
[11] IRD,undefined
[12] UPEC),undefined
[13] UPMC,undefined
[14] LMGE,undefined
[15] Laboratoire Microorganismes: Génome et Environnement,undefined
[16] Université Blaise Pascal,undefined
[17] UMR CNRS 6023,undefined
[18] Laboratoire Bioemco,undefined
[19] Biogéochimie et Ecologie des Milieux Continentaux,undefined
[20] UMR CNRS 7618 (CNRS,undefined
[21] UPMC,undefined
[22] ENS,undefined
[23] AgroParisTech,undefined
[24] IRD,undefined
[25] UPEC),undefined
[26] Ecole Normale Supérieure,undefined
[27] Ecolab,undefined
[28] Laboratoire d’Ecologie Fonctionnelle,undefined
[29] UMR 5245 (CNRS-UPS-INPT),undefined
[30] Université Paul Sabatier,undefined
[31] University of Damascus,undefined
来源
Hydrobiologia | 2012年 / 679卷
关键词
Mesocosm experiment; Zooplankton; Seston; Lipid biomarkers; Transparent exopolymer particles; Consumer-driven nutrient recycling;
D O I
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中图分类号
学科分类号
摘要
Sedimentation is a key process in lake functioning, and plays an important role in nutrient and carbon cycles at both regional and global scales. Several biological processes have been shown as quantitatively affecting sedimentation, but very few works have tried to relate the structure of aquatic communities and the quality of sinking organic matter. We tested in a mesocosm study how food-web structure affects quantitatively and qualitatively sedimentation in eutrophic systems. We carried out a long-term experiment (14 months) in large replicated enclosures either dominated by planktivorous fish or fishless. Food-web structure modified the specific composition of zooplankton communities and phytoplankton biomass, as expected by the trophic cascade theory. Planktivorous fish had a strong positive effect on gross sedimentation rate, but the fraction of suspended particulate material that sank only slightly differed between treatments. The density of transparent exopolymer particles (TEP) was a good descriptor of sedimentation rate, highlighting the key role of these polysaccharidic particles in sinking processes. In fish enclosures, sediment elemental ratios were positively related to seston elemental ratios, suggesting the dominance of algal sedimentation. In fishless mesocosms, N/P ratios of sinking material and of zooplankton showed a strong negative relationship, indicative of a major contribution of zooplankton-egested material to sinking particles. Analyses of free lipids in sediments confirmed the distinct origins of sinking material. Despite the absence of clear elemental composition distinctions between the two types of sediment, food-web structure strongly modified sediment biochemical composition.
引用
收藏
页码:251 / 266
页数:15
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