Area of research
Nature and Landscape Conservation · Ecology
Research interest
Research interests include Ecology, Ecosystem, Grassland, Biodiversity, Species richness, and Nutrient.
Interactions among nutrients govern the global grassland biomass–precipitation relationship
Local adaptation to climate has facilitated the global invasion of cheatgrass
Widening global variability in grassland biomass since the 1980s
Local adaptation to climate facilitates a global invasion
Clarifying the effect of biodiversity on productivity in natural ecosystems with longitudinal data and methods for causal inference
Multidimensional responses of grassland stability to eutrophication
Compositional variation in grassland plant communities
Publisher Correction: Clarifying the effect of biodiversity on productivity in natural ecosystems with longitudinal data and methods for causal inference
Intraspecific trait variation in alpine plants relates to their elevational distribution
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
Nutrients and herbivores impact grassland stability across spatial scales through different pathways
Nutrient identity modifies the destabilising effects of eutrophication in grasslands
Opposing community assembly patterns for dominant and nondominant plant species in herbaceous ecosystems globally
Temporal rarity is a better predictor of local extinction risk than spatial rarity
General destabilizing effects of eutrophication on grassland productivity at multiple spatial scales
Increasing effects of chronic nutrient enrichment on plant diversity loss and ecosystem productivity over time
Global change effects on plant communities are magnified by time and the number of global change factors imposed
Leaf nutrients, not specific leaf area, are consistent indicators of elevated nutrient inputs
Change in dominance determines herbivore effects on plant biodiversity
Tundra Trait Team: A database of plant traits spanning the tundra biome
Spatial heterogeneity in species composition constrains plant community responses to herbivory and fertilisation
Local loss and spatial homogenization of plant diversity reduce ecosystem multifunctionality
Out of the shadows: multiple nutrient limitations drive relationships among biomass, light and plant diversity
Landscape context explains changes in the functional diversity of regenerating forests better than climate or species richness
Integrative modelling reveals mechanisms linking productivity and plant species richness
Addition of multiple limiting resources reduces grassland diversity
Comment on “Worldwide evidence of a unimodal relationship between productivity and plant species richness”
Grassland productivity limited by multiple nutrients
Plant species’ origin predicts dominance and response to nutrient enrichment and herbivores in global grasslands