Publikation: Seasonal, inter-annual and long term variation in top-down versus bottom-up regulation of primary production
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Environmental change strongly affects primary productivity of ecosystems via modifying bottom–up and top-down regulation of primary producers. Here we present a novel approach to quantify the relative importance of regulating factors in natural systems over various time scales: we calculated daily effect sizes of major factors affecting phytoplankton growth during the spring bloom period during almost three decades of lake oligotrophication using numerical experiments with a data based simulation model. We show that with oligotrophication the regulation of spring phytoplankton shifts from primarily top–down to bottom–up, and that the changes in regulation are non-linearly related to the nutrient (phosphorus) concentrations. Our findings indicate that long-term changes in top–down regulation cannot be understood without considering multiple herbivore taxa, here, microzooplankton (ciliates) and mesozooplankton (daphnids). We further demonstrate that bottom-up and top–down regulation are not independent from each other and that their interaction is time-scale dependent.
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KERIMOGLU, Onur, Dietmar STRAILE, Frank PEETERS, 2013. Seasonal, inter-annual and long term variation in top-down versus bottom-up regulation of primary production. In: Oikos. 2013, 122(2), pp. 223-234. ISSN 0030-1299. eISSN 1600-0706. Available under: doi: 10.1111/j.1600-0706.2012.20603.xBibTex
@article{Kerimoglu2013Seaso-20471,
year={2013},
doi={10.1111/j.1600-0706.2012.20603.x},
title={Seasonal, inter-annual and long term variation in top-down versus bottom-up regulation of primary production},
number={2},
volume={122},
issn={0030-1299},
journal={Oikos},
pages={223--234},
author={Kerimoglu, Onur and Straile, Dietmar and Peeters, Frank}
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<dcterms:abstract xml:lang="eng">Environmental change strongly affects primary productivity of ecosystems via modifying bottom–up and top-down regulation of primary producers. Here we present a novel approach to quantify the relative importance of regulating factors in natural systems over various time scales: we calculated daily effect sizes of major factors affecting phytoplankton growth during the spring bloom period during almost three decades of lake oligotrophication using numerical experiments with a data based simulation model. We show that with oligotrophication the regulation of spring phytoplankton shifts from primarily top–down to bottom–up, and that the changes in regulation are non-linearly related to the nutrient (phosphorus) concentrations. Our findings indicate that long-term changes in top–down regulation cannot be understood without considering multiple herbivore taxa, here, microzooplankton (ciliates) and mesozooplankton (daphnids). We further demonstrate that bottom-up and top–down regulation are not independent from each other and that their interaction is time-scale dependent.</dcterms:abstract>
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