Area of research
Nature and Landscape Conservation · Ecology, Evolution, Behavior and Systematics
Research interest
Research interests include Ecology, Grassland, Nutrient, Ecosystem, Species richness, and Biomass (ecology).
Dominant species predict plant richness and biomass in global grasslands
Forb diversity globally is harmed by nutrient enrichment but can be rescued by large mammalian herbivory
Interactions among nutrients govern the global grassland biomass–precipitation relationship
Widening global variability in grassland biomass since the 1980s
Multidimensional responses of grassland stability to eutrophication
Restoration ecology through the lens of coexistence theory
Nutrient enrichment alters seasonal <i>β</i> ‐diversity in global grasslands
Light competition drives herbivore and nutrient effects on plant diversity
Linking changes in species composition and biomass in a globally distributed grassland experiment
Nitrogen increases early‐stage and slows late‐stage decomposition across diverse grasslands
Nutrient addition drives declines in grassland species richness primarily via enhanced species loss
Temporal rarity is a better predictor of local extinction risk than spatial rarity
Increasing effects of chronic nutrient enrichment on plant diversity loss and ecosystem productivity over time
Nutrients cause grassland biomass to outpace herbivory
Climate and local environment structure asynchrony and the stability of primary production in grasslands
Resource‐enhancing global changes drive a whole‐ecosystem shift to faster cycling but decrease diversity
Integrating the underlying structure of stochasticity into community ecology
Leaf nutrients, not specific leaf area, are consistent indicators of elevated nutrient inputs
Soil net nitrogen mineralisation across global grasslands
Belowground Biomass Response to Nutrient Enrichment Depends on Light Limitation Across Globally Distributed Grasslands
Spatial heterogeneity in species composition constrains plant community responses to herbivory and fertilisation
Local loss and spatial homogenization of plant diversity reduce ecosystem multifunctionality
Phosphorus resource partitioning shapes phosphorus acquisition and plant species abundance in grasslands
Out of the shadows: multiple nutrient limitations drive relationships among biomass, light and plant diversity
Herbivores safeguard plant diversity by reducing variability in dominance
Integrative modelling reveals mechanisms linking productivity and plant species richness
Addition of multiple limiting resources reduces grassland diversity
The influence of balanced and imbalanced resource supply on biodiversity–functioning relationship across ecosystems
Comment on “Worldwide evidence of a unimodal relationship between productivity and plant species richness”
Consistent responses of soil microbial communities to elevated nutrient inputs in grasslands across the globe