Coastal marine systems are affected by seasonal variations in biogeochemical and physical processes, sometimes leading to alternating periods of reproductive growth limitation within an annual cycle. Transitions between these periods can be sudden or gradual. Human activities, such as reservoir construction and interbasin water transfers, influence these processes and can affect the type of transition between resource loading conditions. How such human activities might influence phytoplankton succession is largely unknown. Here, we employ a multispecies, multi-nutrient model to explore how nutrient loading switching mode might affect phytoplankton succession. The model is based on the Monod-relationship, predicting an instantaneous reproduc...
A decade of observation in South San Francisco Bay demonstrates that estuarine phytoplankton biomass...
The phytoplankton in coastal regions are responding to constant environmental changes, thus the use ...
Environmental disturbances in aquatic systems alter phytoplankton community structure, diversity and...
Coastal marine systems are affected by seasonal variations in biogeochemical and physical processes,...
Annual variations in biogeochemical and physical processes can lead to nutrient variability and seas...
Coastal marine systems are affected by seasonal variations in biogeochemical and physical processes,...
Annual variations in biogeochemical and physical processes can lead to nutrient variability and seas...
Identifying the mechanisms controlling the temporal dynamics of ecological communities is key to und...
Annual plankton succession has been investigated for many decades and hypotheses ranging from abioti...
Annual variations in biogeochemical and physical processes can lead to nutrient variability and seas...
International audiencePhytoplanktonic communities maintain a high diversity in a seemingly homogeneo...
Phytoplankton blooms play an important role in global primary productivity and the dynamics of bloom...
We seek to understand, in mathematical terms, the causes of stability in marine phytoplankton biomas...
An analysis of the induced changes in both total productivity and community structure as a consequen...
It is well-recognized in plankton ecology that phytoplankton development can lead to distinct peaks ...
A decade of observation in South San Francisco Bay demonstrates that estuarine phytoplankton biomass...
The phytoplankton in coastal regions are responding to constant environmental changes, thus the use ...
Environmental disturbances in aquatic systems alter phytoplankton community structure, diversity and...
Coastal marine systems are affected by seasonal variations in biogeochemical and physical processes,...
Annual variations in biogeochemical and physical processes can lead to nutrient variability and seas...
Coastal marine systems are affected by seasonal variations in biogeochemical and physical processes,...
Annual variations in biogeochemical and physical processes can lead to nutrient variability and seas...
Identifying the mechanisms controlling the temporal dynamics of ecological communities is key to und...
Annual plankton succession has been investigated for many decades and hypotheses ranging from abioti...
Annual variations in biogeochemical and physical processes can lead to nutrient variability and seas...
International audiencePhytoplanktonic communities maintain a high diversity in a seemingly homogeneo...
Phytoplankton blooms play an important role in global primary productivity and the dynamics of bloom...
We seek to understand, in mathematical terms, the causes of stability in marine phytoplankton biomas...
An analysis of the induced changes in both total productivity and community structure as a consequen...
It is well-recognized in plankton ecology that phytoplankton development can lead to distinct peaks ...
A decade of observation in South San Francisco Bay demonstrates that estuarine phytoplankton biomass...
The phytoplankton in coastal regions are responding to constant environmental changes, thus the use ...
Environmental disturbances in aquatic systems alter phytoplankton community structure, diversity and...