The majority of the Southern Ocean is a high-nutrient low-chlorophyll (HNLC) ecosystem. Localized increases in chlorophyll concentration measured in the wake of bathymetric features near South Georgia demonstrate variations in the factors governing the HNLC condition. We explore the possibility that the contrast between these areas of high-chlorophyll and surrounding HNLC areas is associated with variations in phytoplankton photophysiology. Total dissolvable iron concentrations, phytoplankton photophysiology and community structure were investigated in late April 2003 on a transect along the North Scotia Ridge (53–54S) between the Falkland Islands and South Georgia (58–33W). Total dissolvable iron concentrations suggested a benthic source o...
The role of iron and light in controlling photosynthate production and allocation in phytoplankton p...
The ratio between fluorescence (F) and chlorophyll-a (Chl)—where fluorescence is measured with a sat...
Evaluation of photosynthetic competency in time and space is critical forbetter estimates and models...
The majority of the Southern Ocean is a high-nutrient low-chlorophyll (HNLC) ecosystem. Localized in...
The Southern Ocean is the world's largest high nutrient low chlorophyll (HNLC) region. However, sate...
Fast Repetition Rate fluorometry (FRRf) measurements of phytoplankton photophysiology from an across...
Phytoplankton across the majority of the world’s oceans are thought to be limited by the availabilit...
The high nutrient low chlorophyll (HNLC) surface waters of the Southern Ocean are characterised by h...
We investigated phytoplankton blooms around the island of South Georgia, in the South Atlantic secto...
Most of the Southern Ocean is a high?nutrient, low?chlorophyll (HNLC) area. There are exceptions to ...
The Southern Ocean is largely a High Nutrient Low Chlorophyll (HNLC) region where macronutrient conc...
Waters of the Southern Ocean are characterized by high macronutrient concentrations but limited avai...
Amidst high-nutrient low-chlorophyll waters of the south-western Atlantic sector of the Southern Oce...
The islands of the Southern Ocean, the largest of the High Nutrient Low Chlorophyll (HNLC) regions, ...
Most of the Southern Ocean is a high-nutrient, low-chlorophyll (HNLC) area. There are exceptions to ...
The role of iron and light in controlling photosynthate production and allocation in phytoplankton p...
The ratio between fluorescence (F) and chlorophyll-a (Chl)—where fluorescence is measured with a sat...
Evaluation of photosynthetic competency in time and space is critical forbetter estimates and models...
The majority of the Southern Ocean is a high-nutrient low-chlorophyll (HNLC) ecosystem. Localized in...
The Southern Ocean is the world's largest high nutrient low chlorophyll (HNLC) region. However, sate...
Fast Repetition Rate fluorometry (FRRf) measurements of phytoplankton photophysiology from an across...
Phytoplankton across the majority of the world’s oceans are thought to be limited by the availabilit...
The high nutrient low chlorophyll (HNLC) surface waters of the Southern Ocean are characterised by h...
We investigated phytoplankton blooms around the island of South Georgia, in the South Atlantic secto...
Most of the Southern Ocean is a high?nutrient, low?chlorophyll (HNLC) area. There are exceptions to ...
The Southern Ocean is largely a High Nutrient Low Chlorophyll (HNLC) region where macronutrient conc...
Waters of the Southern Ocean are characterized by high macronutrient concentrations but limited avai...
Amidst high-nutrient low-chlorophyll waters of the south-western Atlantic sector of the Southern Oce...
The islands of the Southern Ocean, the largest of the High Nutrient Low Chlorophyll (HNLC) regions, ...
Most of the Southern Ocean is a high-nutrient, low-chlorophyll (HNLC) area. There are exceptions to ...
The role of iron and light in controlling photosynthate production and allocation in phytoplankton p...
The ratio between fluorescence (F) and chlorophyll-a (Chl)—where fluorescence is measured with a sat...
Evaluation of photosynthetic competency in time and space is critical forbetter estimates and models...