Chlorophyll fluorescence from phytoplankton provides a tool to assess iron limitation in the oceans, but the physiological mechanism underlying the fluorescence response is not understood. We examined fluorescence properties of the model cyanobacterium Synechocystis PCC6803 and a ΔisiA knock-out mutant of the same species grown under three culture conditions which simulate nutrient conditions found in the open ocean: (1) nitrate and iron replete, (2) limiting-iron and high-nitrate, representative of natural high-nitrate, low-chlorophyll regions, and (3) iron and nitrogen co-limiting. We show that low variable fluorescence, a key diagnostic of iron limitation, results from synthesis of antennae complexes far in excess of what can be accommod...
Iron, one of the structural elements of organic components that play an essential role in photosynth...
Phytoplankton photosynthesis links global ocean biology and climate-driven fluctuations in the physi...
As iron (Fe) and light availability strongly influence phytoplankton species distribution in low Fe-...
Iron availability influences phytoplankton physiology and growth over more than one-third of the sur...
Phytoplankton photosynthesis links global ocean biology and climate-driven fluctuations in the physi...
Cyanobacteria have previously been considered to differ fundamentally from plants and algae in their...
Iron (Fe) is an essential co-factor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Iron limits phytoplankton productivity and biomass in significant portions of the global ocean. A nu...
Evaluation of photosynthetic competency in time and space is critical for better estimates and model...
Iron (Fe) is an essential cofactor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Marine diatoms play a predominant role in the global carbon cycle but their growth is often limited...
Iron is an essential component in many protein complexes involved in photosynthesis, but environment...
The ratio between fluorescence (F) and chlorophyll-a (Chl)—where fluorescence is measured with a sat...
Iron is an essential, yet scarce, nutrient in marine environments. Phytoplankton, and especially cya...
AbstractCyanobacteria have previously been considered to differ fundamentally from plants and algae ...
Iron, one of the structural elements of organic components that play an essential role in photosynth...
Phytoplankton photosynthesis links global ocean biology and climate-driven fluctuations in the physi...
As iron (Fe) and light availability strongly influence phytoplankton species distribution in low Fe-...
Iron availability influences phytoplankton physiology and growth over more than one-third of the sur...
Phytoplankton photosynthesis links global ocean biology and climate-driven fluctuations in the physi...
Cyanobacteria have previously been considered to differ fundamentally from plants and algae in their...
Iron (Fe) is an essential co-factor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Iron limits phytoplankton productivity and biomass in significant portions of the global ocean. A nu...
Evaluation of photosynthetic competency in time and space is critical for better estimates and model...
Iron (Fe) is an essential cofactor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Marine diatoms play a predominant role in the global carbon cycle but their growth is often limited...
Iron is an essential component in many protein complexes involved in photosynthesis, but environment...
The ratio between fluorescence (F) and chlorophyll-a (Chl)—where fluorescence is measured with a sat...
Iron is an essential, yet scarce, nutrient in marine environments. Phytoplankton, and especially cya...
AbstractCyanobacteria have previously been considered to differ fundamentally from plants and algae ...
Iron, one of the structural elements of organic components that play an essential role in photosynth...
Phytoplankton photosynthesis links global ocean biology and climate-driven fluctuations in the physi...
As iron (Fe) and light availability strongly influence phytoplankton species distribution in low Fe-...