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Plant species richness sustains higher trophic levels of soil nematode communities after consecutive environmental perturbations
by
Cesarz, Simone
, Ciobanu, Marcel
, Ebeling, Anne
, Wright, Alexandra J.
, Weisser, Wolfgang W.
, Eisenhauer, Nico
, Vogel, Anja
in
Abundance
/ Analysis
/ Animals
/ Biodiversity
/ Biomass
/ Biomedical and Life Sciences
/ Climate
/ Climate Change
/ Climatology
/ Complexity
/ Drought
/ Ecological function
/ Ecology
/ Ecosystem
/ Ecosystems
/ Environmental aspects
/ Extreme weather
/ Feeding
/ flooded conditions
/ Flooding
/ Floods
/ Flowers & plants
/ Food chains
/ Food plants
/ Food webs
/ GLOBAL CHANGE ECOLOGY – ORIGINAL RESEARCH
/ Global temperature changes
/ Grassland
/ Grasslands
/ Hydrology/Water Resources
/ indicator species
/ Life Sciences
/ Monoculture
/ Monoculture (aquaculture)
/ Nematoda
/ Nematodes
/ Perturbations
/ plant parasitic nematodes
/ Plant Sciences
/ Plant species
/ Roundworms
/ Soil
/ Soil erosion
/ Soil fauna
/ soil food webs
/ soil nematodes
/ Soil stability
/ Soil structure
/ Soils
/ Species
/ Species diversity
/ Species richness
/ Summer
/ Terrestrial ecosystems
/ Trophic levels
/ Waterlogged ground
/ Waterlogging
/ Weather
/ Weather forecasting
2017
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Plant species richness sustains higher trophic levels of soil nematode communities after consecutive environmental perturbations
by
Cesarz, Simone
, Ciobanu, Marcel
, Ebeling, Anne
, Wright, Alexandra J.
, Weisser, Wolfgang W.
, Eisenhauer, Nico
, Vogel, Anja
in
Abundance
/ Analysis
/ Animals
/ Biodiversity
/ Biomass
/ Biomedical and Life Sciences
/ Climate
/ Climate Change
/ Climatology
/ Complexity
/ Drought
/ Ecological function
/ Ecology
/ Ecosystem
/ Ecosystems
/ Environmental aspects
/ Extreme weather
/ Feeding
/ flooded conditions
/ Flooding
/ Floods
/ Flowers & plants
/ Food chains
/ Food plants
/ Food webs
/ GLOBAL CHANGE ECOLOGY – ORIGINAL RESEARCH
/ Global temperature changes
/ Grassland
/ Grasslands
/ Hydrology/Water Resources
/ indicator species
/ Life Sciences
/ Monoculture
/ Monoculture (aquaculture)
/ Nematoda
/ Nematodes
/ Perturbations
/ plant parasitic nematodes
/ Plant Sciences
/ Plant species
/ Roundworms
/ Soil
/ Soil erosion
/ Soil fauna
/ soil food webs
/ soil nematodes
/ Soil stability
/ Soil structure
/ Soils
/ Species
/ Species diversity
/ Species richness
/ Summer
/ Terrestrial ecosystems
/ Trophic levels
/ Waterlogged ground
/ Waterlogging
/ Weather
/ Weather forecasting
2017
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Plant species richness sustains higher trophic levels of soil nematode communities after consecutive environmental perturbations
by
Cesarz, Simone
, Ciobanu, Marcel
, Ebeling, Anne
, Wright, Alexandra J.
, Weisser, Wolfgang W.
, Eisenhauer, Nico
, Vogel, Anja
in
Abundance
/ Analysis
/ Animals
/ Biodiversity
/ Biomass
/ Biomedical and Life Sciences
/ Climate
/ Climate Change
/ Climatology
/ Complexity
/ Drought
/ Ecological function
/ Ecology
/ Ecosystem
/ Ecosystems
/ Environmental aspects
/ Extreme weather
/ Feeding
/ flooded conditions
/ Flooding
/ Floods
/ Flowers & plants
/ Food chains
/ Food plants
/ Food webs
/ GLOBAL CHANGE ECOLOGY – ORIGINAL RESEARCH
/ Global temperature changes
/ Grassland
/ Grasslands
/ Hydrology/Water Resources
/ indicator species
/ Life Sciences
/ Monoculture
/ Monoculture (aquaculture)
/ Nematoda
/ Nematodes
/ Perturbations
/ plant parasitic nematodes
/ Plant Sciences
/ Plant species
/ Roundworms
/ Soil
/ Soil erosion
/ Soil fauna
/ soil food webs
/ soil nematodes
/ Soil stability
/ Soil structure
/ Soils
/ Species
/ Species diversity
/ Species richness
/ Summer
/ Terrestrial ecosystems
/ Trophic levels
/ Waterlogged ground
/ Waterlogging
/ Weather
/ Weather forecasting
2017
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Plant species richness sustains higher trophic levels of soil nematode communities after consecutive environmental perturbations
Journal Article
Plant species richness sustains higher trophic levels of soil nematode communities after consecutive environmental perturbations
2017
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Overview
The magnitude and frequency of extreme weather events are predicted to increase in the future due to ongoing climate change. In particular, floods and droughts resulting from climate change are thought to alter the ecosystem functions and stability. However, knowledge of the effects of these weather events on soil fauna is scarce, although they are key towards functioning of terrestrial ecosystems. Plant species richness has been shown to affect the stability of ecosystem functions and food webs. Here, we used the occurrence of a natural flood in a biodiversity grassland experiment that was followed by a simulated summer drought experiment, to investigate the interactive effects of plant species richness, a natural flood, and a subsequent summer drought on nematode communities. Three and five months after the natural flooding, effects of flooding severity were still detectable in the belowground system. We found that flooding severity decreased soil nematode food-web structure (loss of K-strategists) and the abundance of plant feeding nematodes. However, high plant species richness maintained higher diversity and abundance of higher trophic levels compared to monocultures throughout the flood. The subsequent summer drought seemed to be of lower importance but reversed negative flooding effects in some cases. This probably occurred because the studied grassland system is well adapted to drought, or because drought conditions alleviated the negative impact of long-term soil waterlogging. Using soil nematodes as indicator taxa, this study suggests that high plant species richness can maintain soil food web complexity after consecutive environmental perturbations.
Publisher
Springer Science + Business Media,Springer Berlin Heidelberg,Springer,Springer Nature B.V
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