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Distributional overlap rather than habitat differentiation characterizes co-occurrence of bivalves in intertidal soft sediment systems 5
Compton, Tanya J.; Troost, Tineke A.; Van Der Meer, Jaap; Kraan, Casper; Honkoop, Pieter J. C.; Rogers, Danny I.; Pearson, Grant B.; De Goeij, Petra; Bocher, Pierrick; Lavaleye, Marc S. S.; Leyrer, Jutta; Yates, Mick G.; Dekinga, Anne; Piersma, Theunis.
Diverse species assemblages are often associated with a diversity of habitat structures. Sedimentary systems seem to be no exception, as within sedimentary systems benthic species diversity within a sample point appears to correlate with sediment grain size complexity. However, it remains to be shown whether total benthic species diversity relates to a system's sediment heterogeneity across multiple systems. In the present paper we examined whether bivalve diversity is associated with: (1) sediment heterogeneity across systems and (2) sediment grain size complexity within systems, at 9 temperate and tropical tidal flat systems. Although bivalve life-history strategies, like post-settlement habitat selection, might suggest that sediment heterogeneity should...
Tipo: Text Palavras-chave: Aiguillon Bay; Marennes Oleron Bay; Mont Saint Michel Bay; Wadden Sea; The Wash; Roebuck Bay; Banc d'Arguin; Sediment diversity.
Ano: 2008 URL: http://archimer.ifremer.fr/doc/2008/publication-6141.pdf
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Responses of summer phytoplankton biomass to changes in top-down forcing: Insights from comparative modelling 5
Maar, Marie; Butenschon, Momme; Daewel, Ute; Eggert, Anja; Fan, Wei; Hjollo, Solfrid S.; Hufnagl, Marc; Huret, Martin; Ji, Rubao; Lacroix, Genevieve; Peck, Myron A.; Radtke, Hagen; Sailley, Sevrine; Sinerchia, Matteo; Skogen, Morten D.; Travers-trolet, Morgane; Troost, Tineke A.; Van De Wolfshaar, Karen.
The present study describes the responses of summer phytoplankton biomass to changes in top-down forcing (expressed as zooplankton mortality) in three ecosystems (the North Sea, the Baltic Sea and the Nordic Seas) across different 3D ecosystem models. In each of the model set-ups, we applied the same changes in the magnitude of mortality (±20%) of the highest trophic zooplankton level (Z1). Model results showed overall dampened responses of phytoplankton relative to Z1 biomass. Phytoplankton responses varied depending on the food web structure and trophic coupling represented in the models. Hence, a priori model assumptions were found to influence cascades and pathways in model estimates and, thus, become highly relevant when examining ecosystem pressures...
Tipo: Text Palavras-chave: Plankton functional types; Trophic cascades; Zooplankton mortality; Phytoplankton; Ensemble modelling.
Ano: 2018 URL: https://archimer.ifremer.fr/doc/00433/54466/56083.pdf
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