Disturbances are key drivers of plant community composition, structure, and function. Plant functional traits, including life forms and reproductive strategies are critical to the resilience and resistance of plant communities in the event of disturbance. Climate change and increasing anthropogenic disturbance are altering natural disturbance regimes globally. When these regimes shift beyond the adaptive resilience of plant functional traits, local populations and ecosystem functions can become compromised. We tested the influence of multiple disturbances, of varying intensity and frequency, on the composition and abundance of vascular plant communities and their respective functional traits (life forms and reproductive strategies) in the w...
Fire is a key process in eucalypt communities, exerting a strong influence on the composition, struc...
The composition of plant communities may be driven by responses of key plant resilience traits (resp...
Global importance of fire: Disturbance regime is a fundamental driver of plant community composition...
Disturbances are key drivers of plant community composition, structure and function. Plant functiona...
Postfire resprouting and recruitment from seed are key plant life-history traits that influence popu...
The resprouting response of plant species to fire is a key life history trait that has profound effe...
Changing disturbance-climate interactions will drive shifts in plant communities: these effects are ...
Fire is a key process in eucalypt communities, exerting a strong influence on the composition, struc...
Record-breaking fire seasons in many regions across the globe raise important ques-tions about plant...
Context: Forest systems are dynamic and can alternate between alternative stable states in response ...
AimKnowledge of how climate and fire regimes affect regeneration in foundation species is critical t...
ABSTRACT Disturbance is an important ecological driver of plant community composition and adaptio...
In fire-prone ecosystems, plant species exhibit a range of traits which allow them to persist under ...
Climate change is causing fire regime shifts in ecosystems worldwide. Plant species with regeneratio...
Timber harvesting, frequent wildfires and a changing climate are influencing ecosystem composition, ...
Fire is a key process in eucalypt communities, exerting a strong influence on the composition, struc...
The composition of plant communities may be driven by responses of key plant resilience traits (resp...
Global importance of fire: Disturbance regime is a fundamental driver of plant community composition...
Disturbances are key drivers of plant community composition, structure and function. Plant functiona...
Postfire resprouting and recruitment from seed are key plant life-history traits that influence popu...
The resprouting response of plant species to fire is a key life history trait that has profound effe...
Changing disturbance-climate interactions will drive shifts in plant communities: these effects are ...
Fire is a key process in eucalypt communities, exerting a strong influence on the composition, struc...
Record-breaking fire seasons in many regions across the globe raise important ques-tions about plant...
Context: Forest systems are dynamic and can alternate between alternative stable states in response ...
AimKnowledge of how climate and fire regimes affect regeneration in foundation species is critical t...
ABSTRACT Disturbance is an important ecological driver of plant community composition and adaptio...
In fire-prone ecosystems, plant species exhibit a range of traits which allow them to persist under ...
Climate change is causing fire regime shifts in ecosystems worldwide. Plant species with regeneratio...
Timber harvesting, frequent wildfires and a changing climate are influencing ecosystem composition, ...
Fire is a key process in eucalypt communities, exerting a strong influence on the composition, struc...
The composition of plant communities may be driven by responses of key plant resilience traits (resp...
Global importance of fire: Disturbance regime is a fundamental driver of plant community composition...