1. Inter-annual variation in seasonal weather patterns causes shifts in the relative timing of phenological events of species within communities, but we currently lack a mechanistic understanding of how these phenological shifts affect species interactions. Identifying these mechanisms is critical to predicting how inter-annual variation affects populations and communities. 2. Species’ phenologies, particularly the timing of offspring arrival, play an important role in the annual cycles of community assembly. We hypothesize that shifts in relative arrival of offspring can alter interspecific interactions through a mechanism called size-mediated priority effects (SMPE), in which individuals that arrive earlier can grow to achieve a body size...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
1. Inter-annual variation in seasonal weather patterns causes shifts in the relative timing of pheno...
1. Inter-annual variation in seasonal weather patterns causes shifts in the relative timing of pheno...
Interannual variation in seasonal weather patterns causes shifts in the relative timing of phenologi...
Timing of phenological events varies among years with natural variation in environmental conditions ...
1. The vast majority of species interactions are seasonally structured and depend on species’ relati...
1. The vast majority of species interactions are seasonally structured and depend on species’ relati...
1. A shift in the relative arrival of offspring, e.g., a shift in hatching time, can affect competit...
1. A shift in the relative arrival of offspring, e.g., a shift in hatching time, can affect competit...
Most habitats exhibit seasonal changes in environmental conditions. These seasonal patterns can vary...
1. A shift in the relative arrival of offspring, e.g., a shift in hatching time, can affect competit...
1. The vast majority of species interactions are seasonally structured and depend on species' relati...
1. The vast majority of species interactions are seasonally structured and depend on species’ relati...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
1. Inter-annual variation in seasonal weather patterns causes shifts in the relative timing of pheno...
1. Inter-annual variation in seasonal weather patterns causes shifts in the relative timing of pheno...
Interannual variation in seasonal weather patterns causes shifts in the relative timing of phenologi...
Timing of phenological events varies among years with natural variation in environmental conditions ...
1. The vast majority of species interactions are seasonally structured and depend on species’ relati...
1. The vast majority of species interactions are seasonally structured and depend on species’ relati...
1. A shift in the relative arrival of offspring, e.g., a shift in hatching time, can affect competit...
1. A shift in the relative arrival of offspring, e.g., a shift in hatching time, can affect competit...
Most habitats exhibit seasonal changes in environmental conditions. These seasonal patterns can vary...
1. A shift in the relative arrival of offspring, e.g., a shift in hatching time, can affect competit...
1. The vast majority of species interactions are seasonally structured and depend on species' relati...
1. The vast majority of species interactions are seasonally structured and depend on species’ relati...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...
Ecologists use species traits to predict individual responses to environmental change, and ultimatel...