Changing disturbance-climate interactions will drive shifts in plant communities: these effects are not adequately quantified by environmental niche models used to predict future species distributions. We quantified the effects of more frequent fire and lower rainfall - as projected to occur under a warming and drying climate - on population responses of shrub species in biodiverse Mediterranean-climate type shrublands near Eneabba, southwestern Australia. Using experimental fires, we measured the density of all shrub species for four dominant plant functional groups (resprouter/non-sprouter x serotinous/soil seed bank) before and after fire in 33 shrubland sites, covering four post-fire rainfall years and fire intervals from 3 – 24 years. ...
Postfire resprouting and recruitment from seed are key plant life-history traits that influence popu...
Disturbances are key drivers of plant community composition, structure and function. Plant functiona...
Mediterranean-type ecosystems (MTEs) harbor an exceptionally high biodiversity of vascular plants. A...
Changing disturbance-climate interactions will drive shifts in plant communities: these effects are ...
Changing disturbance-climate interactions will drive shifts in plant communities: these effects are ...
Global importance of fire: Disturbance regime is a fundamental driver of plant community composition...
Wildfires are increasing in size and severity and fire seasons are lengthening, largely driven by cl...
1. Global change is threatening ecosystems and biodiversity worldwide, creating a pressing need to u...
The composition of plant communities may be driven by responses of key plant resilience traits (resp...
Record-breaking fire seasons in many regions across the globe raise important ques-tions about plant...
Climate change is increasing the frequency, intensity, and size of fire events due to longer and mor...
In fire-prone environments, the "event-dependent hypothesis" states that plant population changes ar...
While fire-induced changes in biodiversity are well documented, less is known about how fire impacts...
Aim While niche models are typically used to assess the vulnerability of species to climate change, ...
2019, Springer Nature B.V. Fire management at the landscape scale may be detrimental to threatened s...
Postfire resprouting and recruitment from seed are key plant life-history traits that influence popu...
Disturbances are key drivers of plant community composition, structure and function. Plant functiona...
Mediterranean-type ecosystems (MTEs) harbor an exceptionally high biodiversity of vascular plants. A...
Changing disturbance-climate interactions will drive shifts in plant communities: these effects are ...
Changing disturbance-climate interactions will drive shifts in plant communities: these effects are ...
Global importance of fire: Disturbance regime is a fundamental driver of plant community composition...
Wildfires are increasing in size and severity and fire seasons are lengthening, largely driven by cl...
1. Global change is threatening ecosystems and biodiversity worldwide, creating a pressing need to u...
The composition of plant communities may be driven by responses of key plant resilience traits (resp...
Record-breaking fire seasons in many regions across the globe raise important ques-tions about plant...
Climate change is increasing the frequency, intensity, and size of fire events due to longer and mor...
In fire-prone environments, the "event-dependent hypothesis" states that plant population changes ar...
While fire-induced changes in biodiversity are well documented, less is known about how fire impacts...
Aim While niche models are typically used to assess the vulnerability of species to climate change, ...
2019, Springer Nature B.V. Fire management at the landscape scale may be detrimental to threatened s...
Postfire resprouting and recruitment from seed are key plant life-history traits that influence popu...
Disturbances are key drivers of plant community composition, structure and function. Plant functiona...
Mediterranean-type ecosystems (MTEs) harbor an exceptionally high biodiversity of vascular plants. A...