1. Climate change is likely to shift plant communities towards species from warmer regions, a process termed “thermophilization.” In forests, canopy disturbances such as fire may hasten this process by increasing temperature and moisture stress in the understory, yet little is known about the mechanisms that might drive such shifts, or the consequences of these processes for plant diversity. 2. We sampled understory vegetation across a gradient of disturbance severity from a large-scale natural experiment created by the factorial combination of forest thinning and wildfire in California. Using information on evolutionary history and functional traits, we tested the hypothesis that disturbance severity should increase community dominance by ...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
1. Climate change is likely to shift plant communities towards species from warmer regions, a proces...
Forests in the North American Mediterranean Climate zone (NAMCZ) are increasingly defined by novel d...
Forests in the North American Mediterranean Climate zone (NAMCZ) are increasingly defined by novel d...
Climate change is driving widespread changes in ecological communities. Warming temperatures often s...
Climate change is driving widespread changes in ecological communities. Warming temperatures often s...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
The vast majority of plant biodiversity associated with temperate forests is harboured by the unders...
The vast majority of plant biodiversity associated with temperate forests is harboured by the unders...
Climate change is expected to cause widespread shifts in the distribution and abundance of plant spe...
Fire is a major force driving the evolution of plants and the structure and function of ecosystems g...
Climate change is expected to cause widespread shifts in the distribution and abundance of plant spe...
Climate change is expected to cause widespread shifts in the distribution and abundance of plant spe...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
1. Climate change is likely to shift plant communities towards species from warmer regions, a proces...
Forests in the North American Mediterranean Climate zone (NAMCZ) are increasingly defined by novel d...
Forests in the North American Mediterranean Climate zone (NAMCZ) are increasingly defined by novel d...
Climate change is driving widespread changes in ecological communities. Warming temperatures often s...
Climate change is driving widespread changes in ecological communities. Warming temperatures often s...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
The vast majority of plant biodiversity associated with temperate forests is harboured by the unders...
The vast majority of plant biodiversity associated with temperate forests is harboured by the unders...
Climate change is expected to cause widespread shifts in the distribution and abundance of plant spe...
Fire is a major force driving the evolution of plants and the structure and function of ecosystems g...
Climate change is expected to cause widespread shifts in the distribution and abundance of plant spe...
Climate change is expected to cause widespread shifts in the distribution and abundance of plant spe...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...
Competition for light has profound effects on plant performance in virtually all terrestrial ecosyst...