AbstractCyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation of low iron adaptation in the oligotrophic marine environment is a decrease in levels of iron-rich photosynthetic components, including the reaction center of photosystem I and the cytochrome b6f complex [R.F. Strzepek and P.J. Harrison, Photosynthetic architecture differs in coastal and oceanic diatoms, Nature 431 (2004) 689–692.]. These thylakoid membrane components have well characterised roles in linear and cyclic photosynthetic electron transport and their low abundance creates potential impediments to photosynthetic function. Here we show that the marine cyanobacterium Synechococcus WH8102 exhibits significant alternative electro...
Marine Synechococcus and Prochlorococcus are picocyanobacteria predominating in subtropical, oligotr...
Chlorophyll fluorescence from phytoplankton provides a tool to assess iron limitation in the oceans,...
Oxygenic photosynthesis converts light-energy into chemical free energy by reducing NADP$\sp+$ to NA...
Cyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation o...
Cyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation o...
Iron (Fe) is an essential co-factor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Phytoplankton in high-light, low-nutrient ocean environments are challenged with maintaining high ph...
Iron (Fe) is an essential cofactor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Diatoms are a key taxon of eukaryotic phytoplankton and a major contributor to global carbon fixatio...
Adaptation of photosynthesis in marine environment has been examined in two strains of the green, pi...
Reduction of iron from the ferric state to the ferrous state is one strategy employed by microorgani...
A Thesis Submitted In Partial Fulfillment of the Requirements For the Degree of Master of Science-Bi...
<div><p>Iron availability directly affects photosynthesis and limits phytoplankton growth over vast ...
Iron limits phytoplankton productivity and biomass in significant portions of the global ocean. A nu...
Marine diatoms play a predominant role in the global carbon cycle but their growth is often limited...
Marine Synechococcus and Prochlorococcus are picocyanobacteria predominating in subtropical, oligotr...
Chlorophyll fluorescence from phytoplankton provides a tool to assess iron limitation in the oceans,...
Oxygenic photosynthesis converts light-energy into chemical free energy by reducing NADP$\sp+$ to NA...
Cyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation o...
Cyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation o...
Iron (Fe) is an essential co-factor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Phytoplankton in high-light, low-nutrient ocean environments are challenged with maintaining high ph...
Iron (Fe) is an essential cofactor for many metabolic enzymes of photoautotrophs. Although Fe limit...
Diatoms are a key taxon of eukaryotic phytoplankton and a major contributor to global carbon fixatio...
Adaptation of photosynthesis in marine environment has been examined in two strains of the green, pi...
Reduction of iron from the ferric state to the ferrous state is one strategy employed by microorgani...
A Thesis Submitted In Partial Fulfillment of the Requirements For the Degree of Master of Science-Bi...
<div><p>Iron availability directly affects photosynthesis and limits phytoplankton growth over vast ...
Iron limits phytoplankton productivity and biomass in significant portions of the global ocean. A nu...
Marine diatoms play a predominant role in the global carbon cycle but their growth is often limited...
Marine Synechococcus and Prochlorococcus are picocyanobacteria predominating in subtropical, oligotr...
Chlorophyll fluorescence from phytoplankton provides a tool to assess iron limitation in the oceans,...
Oxygenic photosynthesis converts light-energy into chemical free energy by reducing NADP$\sp+$ to NA...