To study the interaction between species- and ecosystem-level impacts of climate change, we focus on the question of how climate-induced shifts in key species affect the positive feedback loops that lock shallow lakes either in a transparent, macrophyte-dominated state or, alternatively, in a turbid, phytoplankton-dominated state. We hypothesize that climate warming will weaken the resilience of the macrophyte-dominated clear state. For the turbid state, we hypothesize that climate warming and climate-induced eutrophication will increase the dominance of cyanobacteria. Climate change will also affect shallow lakes through a changing hydrology and through climate change-induced eutrophication. We study these phenomena using two models, the f...
Complex ecological models are used to predict the consequences of anticipated future changes in clim...
The majority of lakes on Earth are shallow, unproductive and located at high latitudes. These lakes ...
It is widely believed that climate change acts synergistically with eutrophication to exacerbate the...
To study the interaction between species- and ecosystem-level impacts of climate change, we focus on...
Global average surface temperatures are expected to rise by about 1.4–5.8°C from the present until t...
Global average surface temperatures are expected to rise by about 1.4-5.8 degrees C from the present...
Freshwater ecosystems and their biodiversity are presently seriously threatened by global developmen...
In many aquatic ecosystems, increased nutrient loading has caused eutrophication, which is reflected...
In many aquatic ecosystems, increased nutrient loading has caused eutrophication, which is reflected...
Regime shifts in shallow lakes are typically characterized by submerged macrophyte (clear water regi...
Regime shifts in shallow lakes are typically characterized by submerged macrophyte (clear water regi...
The amount of terrestrial particulate organic matter (t-POM) entering lakes is predicted to increase...
Complex ecological models are used to predict the consequences of anticipated future changes in clim...
Freshwater ecosystems and their biodiversity are presently seriously threatened by global developmen...
The amount of terrestrial particulate organic matter (t-POM) entering lakes is predicted to increase...
Complex ecological models are used to predict the consequences of anticipated future changes in clim...
The majority of lakes on Earth are shallow, unproductive and located at high latitudes. These lakes ...
It is widely believed that climate change acts synergistically with eutrophication to exacerbate the...
To study the interaction between species- and ecosystem-level impacts of climate change, we focus on...
Global average surface temperatures are expected to rise by about 1.4–5.8°C from the present until t...
Global average surface temperatures are expected to rise by about 1.4-5.8 degrees C from the present...
Freshwater ecosystems and their biodiversity are presently seriously threatened by global developmen...
In many aquatic ecosystems, increased nutrient loading has caused eutrophication, which is reflected...
In many aquatic ecosystems, increased nutrient loading has caused eutrophication, which is reflected...
Regime shifts in shallow lakes are typically characterized by submerged macrophyte (clear water regi...
Regime shifts in shallow lakes are typically characterized by submerged macrophyte (clear water regi...
The amount of terrestrial particulate organic matter (t-POM) entering lakes is predicted to increase...
Complex ecological models are used to predict the consequences of anticipated future changes in clim...
Freshwater ecosystems and their biodiversity are presently seriously threatened by global developmen...
The amount of terrestrial particulate organic matter (t-POM) entering lakes is predicted to increase...
Complex ecological models are used to predict the consequences of anticipated future changes in clim...
The majority of lakes on Earth are shallow, unproductive and located at high latitudes. These lakes ...
It is widely believed that climate change acts synergistically with eutrophication to exacerbate the...