Area of research
Nature and Landscape Conservation · Ecological Modeling
Research interest
Research interests include Ecology and Vegetation Dynamics Studies, Species Distribution and Climate Change, Plant and animal studies, and Remote Sensing in Agriculture.
Uneven impacts of climate change around the world and across the annual cycle of winegrapes
Why longer seasons with climate change may not increase tree growth
Building a more predictive model of terroir for the Anthropocene
Budburst timing within a functional trait framework
The Problem of Terroir in the Anthropocene
Effects of Phenology on Plant Community Assembly and Structure
Phenology varies with phylogeny but not by trophic level with climate change.
Weak evidence of provenance effects in spring phenology across Europe and North America.
Ecological drivers of flower-leaf sequences: aridity and proxies for pollinator attraction select for flowering-first in the American plums.
The role of genotypic and climatic variation at the range edge: A case study in winegrapes.
Lack of evidence for the match-mismatch hypothesis across terrestrial trophic interactions.
Contrasting responses to climate variability generate seasonal priority effects between native and invasive forest herbs
How to define, use, and interpret Pagel’s λ (lambda) in ecology and evolution
Experimental designs for testing the interactive effects of temperature and light in ecology: The problem of periodicity
Integrating experiments to predict interactive cue effects on spring phenology with warming.
The increasing relevance of phenology to conservation
Differences between flower and leaf phenological responses to environmental variation drive shifts in spring phenological sequences of temperate woody plants
A simple explanation for declining temperature sensitivity with warming.
Spatial and temporal shifts in photoperiod with climate change.
Late spring freezes coupled with warming winters alter temperate tree phenology and growth.
Climate change reshapes the drivers of false spring risk across European trees.
How phenological tracking shapes species and communities in non-stationary environments.
Noise can create or erase long transient dynamics
Reconciling competing hypotheses regarding flower-leaf sequences in temperate forests for fundamental and global change biology.
A simple explanation for declining temperature sensitivity with warming
Winter temperatures predominate in spring phenological responses to warming
Winter temperatures predominate in spring phenological responses to warming
Disconnects between ecological theory and data in phenological mismatch research
Diversity buffers winegrowing regions from climate change losses.
Rethinking false spring risk.