In experimental metacommunities with marine benthic microalgae, we tested whether heat stress changes effects of connectivity and habitat heterogeneity on metacommunity structure and functioning, by manipulating a simulated heat wave, dispersal frequency and a light intensity gradient. We found that all measures of mean local and regional diversity and community biomass significantly declined after the heat wave and showed no sign of recovery. Additionally, dispersal decreased diversity and increased dominance in both the heat stressed and control communities. Together the heat wave and high dispersal frequency induced a dominance shift by spreading a temperature tolerant but low yielding species from its source patches with low light inten...
Dispersal is key for maintaining biodiversity at local- and regional scales in metacommunities. How...
The information on temperature-mediated changes in biodiversity in local assemblages is scarce and m...
International audienceThe 21st century has seen an acceleration of anthropogenic climate change and ...
In experimental metacommunities with marine benthic microalgae, we tested whether heat stress change...
While the effect of the global biodiversity crisis on local species loss is still debated, there is ...
Landscape connectivity can increase the capacity of communities to maintain their function when envi...
In a culture experiment with microalgae metacommunities, we tested the effects of a regional heatwav...
Community dynamics and structure are greatly affected by climate change through warming. Temperature...
Climate change will not only shift environmental means but will also increase the intensity of extre...
Climate change will not only shift environmental means but will also increase the intensity of extre...
Predicting the effect of climate change on biodiversity is a multifactorial problem that is complica...
Extreme climatic events, including heat waves (HWs) and severe storms, influence the structure of ma...
The strength and direction of interspecific interactions governing communities is expected to change...
Ecological theory suggests that a combination of local and regional factors regulate biodiversity an...
Dispersal is key for maintaining biodiversity at local- and regional scales in metacommunities. How...
The information on temperature-mediated changes in biodiversity in local assemblages is scarce and m...
International audienceThe 21st century has seen an acceleration of anthropogenic climate change and ...
In experimental metacommunities with marine benthic microalgae, we tested whether heat stress change...
While the effect of the global biodiversity crisis on local species loss is still debated, there is ...
Landscape connectivity can increase the capacity of communities to maintain their function when envi...
In a culture experiment with microalgae metacommunities, we tested the effects of a regional heatwav...
Community dynamics and structure are greatly affected by climate change through warming. Temperature...
Climate change will not only shift environmental means but will also increase the intensity of extre...
Climate change will not only shift environmental means but will also increase the intensity of extre...
Predicting the effect of climate change on biodiversity is a multifactorial problem that is complica...
Extreme climatic events, including heat waves (HWs) and severe storms, influence the structure of ma...
The strength and direction of interspecific interactions governing communities is expected to change...
Ecological theory suggests that a combination of local and regional factors regulate biodiversity an...
Dispersal is key for maintaining biodiversity at local- and regional scales in metacommunities. How...
The information on temperature-mediated changes in biodiversity in local assemblages is scarce and m...
International audienceThe 21st century has seen an acceleration of anthropogenic climate change and ...