Area of research
Ecology · Ecology, Evolution, Behavior and Systematics
Research interest
Research focused on Ecology and Predation, with related work in Urbanization, Stressor, Species richness. Notable publications include 'Towards a unified study of multiple stressors: divisions and common goals across research disciplines', 'Urbanization drives cross‐taxon declines in abundance and diversity at multiple spatial scales', and 'The heat is on: Genetic adaptation to urbanization mediated by thermal tolerance and body size'.
Scientists' warning on the need for greater inclusion of dragonflies in global conservation
<scp>ShareTrait</scp> : Towards interoperable and reusable individual trait‐based data in ectotherms
When and how can we predict adaptive responses to climate change?
Thermal Performance Curves in a Polluted World: Too Cold and Too Hot Temperatures Synergistically Increase Pesticide Toxicity
Hierarchical eco-evo dynamics mediated by the gut microbiome
Interactive Effects of Warming and Pollutants on Marine and Freshwater Invertebrates
Evolution of pesticide tolerance and associated changes in the microbiome in the water flea Daphnia magna
Microplastics increases the heat tolerance of Daphnia magna under global warming via hormetic effects
Additional file 1 of Frequency of occurrence and habitat selection shape the spatial variation in the antibiotic resistome in riverine ecosystems in eastern China
Locally adapted gut microbiomes mediate host stress tolerance
Warming, temperature fluctuations and thermal evolution change the effects of microplastics at an environmentally relevant concentration
Towards a unified study of multiple stressors: divisions and common goals across research disciplines
Oxidative stress mediates rapid compensatory growth and its costs
Daily temperature variation lowers the lethal and sublethal impact of a pesticide pulse due to a higher degradation rate
Urbanization drives cross‐taxon declines in abundance and diversity at multiple spatial scales
Temperature variation makes an ectotherm more sensitive to global warming unless thermal evolution occurs
Increased Daily Temperature Fluctuations Overrule the Ability of Gradual Thermal Evolution to Offset the Increased Pesticide Toxicity under Global Warming
Using natural laboratories to study evolution to global warming: contrasting altitudinal, latitudinal, and urbanization gradients
Current and future daily temperature fluctuations make a pesticide more toxic: Contrasting effects on life history and physiology
Negative bioenergetic responses to pesticides in damselfly larvae are more likely when it is hotter and when temperatures fluctuate
Shrinking Body Size and Physiology Contribute to Geographic Variation and the Higher Toxicity of Pesticides in a Warming World
Analysing eco‐evolutionary dynamics—The challenging complexity of the real world
Pace of life syndrome under warming and pollution: integrating life history, behavior, and physiology across latitudes
Transgenerational interactions between pesticide exposure and warming in a vector mosquito
Rapid larval development under time stress reduces adult life span through increasing oxidative damage
Urbanization drives genetic differentiation in physiology and structures the evolution of pace-of-life syndromes in the water flea <i>Daphnia magna</i>
Evolution of geographic variation in thermal performance curves in the face of climate change and implications for biotic interactions
The heat is on: Genetic adaptation to urbanization mediated by thermal tolerance and body size
Daily temperature variation and extreme high temperatures drive performance and biotic interactions in a warming world
Kin competition accelerates experimental range expansion in an arthropod herbivore