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Interactions between above- and belowground organisms modified in climate change experiments.

AutorInnen: 
Stevnbak K§, Scherber C§*, Gladbach D, Beyer C, Mikkelsen TN & S. Christensen
Erscheinungsjahr: 
2012
Vollständiger Titel: 
Interactions between above- and belowground organisms modified in climate change experiments.
ZFMK-Autorinnen / ZFMK-Autoren: 
Publiziert in: 
Nature Climate Change
Publikationstyp: 
Zeitschriftenaufsatz
Bibliographische Angaben: 
Stevnbak K§, Scherber C§*, Gladbach D, Beyer C, Mikkelsen TN & S. Christensen (2012) Interactions between above- and belowground organisms modified in climate change experiments. Nature Climate Change 2: 805–808. Highlighted by FACULTY of 1000.[§equal contributions; *corresponding author]
Abstract: 

Climate change has been shown to affect ecosystem process rates1 and community composition2, with direct and indirect effects on belowground food webs3. In particular, altered rates of herbivory under future climate4 can be expected to influence above–belowground interactions5. Here, we use a multifactor, field-scale climate change experiment and independently manipulate atmospheric CO2 concentration, air and soil temperature and drought in all combinations since 2005. We show that changes in these factors modify the interaction between above- and belowground organisms. We use an insect herbivore to experimentally increase aboveground herbivory in grass phytometers exposed to all eight combinations of climate change factors for three years. Aboveground herbivory increased the abundance of belowground protozoans, microbial growth and microbial nitrogen availability. Increased CO2 modified these links through a reduction in herbivory and cascading effects through the soil food web. Interactions between CO2, drought and warming can affect belowground protozoan abundance. Our findings imply that climate change affects aboveground–belowground interactions through changes in nutrient availability.

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