Adaptation of photosynthesis in marine environment has been examined in two strains of the green, picoeukaryote Ostreococcus: OTH95, a surface/high-light strain, and RCC809, a deep-sea/low-light strain. Differences between the two strains include changes in the light-harvesting capacity, which is lower in OTH95, and in the photoprotection capacity, which is enhanced in OTH95. Furthermore, RCC809 has a reduced maximum rate of O(2) evolution, which is limited by its decreased photosystem I (PSI) level, a possible adaptation to Fe limitation in the open oceans. This decrease is, however, accompanied by a substantial rerouting of the electron flow to establish an H(2)O-to-H(2)O cycle, involving PSII and a potential plastid plastoquinol terminal...
AbstractSix (pico)phytoplankton strains typical for the open oligotrophic oceans were acclimated to ...
International audienceThe dominance of diatoms in turbulent waters suggests special adaptations to t...
The marine picocyanobacteria Synechococcus and Prochlorococcus numerically dominate open ocean phyto...
peer reviewedAdaptation of photosynthesis in marine environment has been examined in two strains of ...
Ostreococcus, the smallest known marine picoeukaryote, includes low- and high-light ecotypes. To det...
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...
AbstractCyanobacteria dominate the world's oceans where iron is often barely detectable. One manifes...
Phytoplankton in high-light, low-nutrient ocean environments are challenged with maintaining high ph...
The photosynthetic activity of phytoplankton is vital, not only as primary production in the ocean, ...
Six (pico)phytoplankton strains typical for the open oligotrophic oceans were acclimated to differen...
In situ viability of oceanic phytoplankton may be relatively low in open oceans. This is assumed to ...
<div><p>The marine picocyanobacteria <i>Synechococcus</i> and <i>Prochlorococcus</i> numerically dom...
International audienceIron is an essential micronutrient involved in many biological processes and i...
In situ viability of oceanic phytoplankton may be relatively low in open oceans. This is assumed to ...
AbstractSix (pico)phytoplankton strains typical for the open oligotrophic oceans were acclimated to ...
International audienceThe dominance of diatoms in turbulent waters suggests special adaptations to t...
The marine picocyanobacteria Synechococcus and Prochlorococcus numerically dominate open ocean phyto...
peer reviewedAdaptation of photosynthesis in marine environment has been examined in two strains of ...
Ostreococcus, the smallest known marine picoeukaryote, includes low- and high-light ecotypes. To det...
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...
AbstractCyanobacteria dominate the world's oceans where iron is often barely detectable. One manifes...
Phytoplankton in high-light, low-nutrient ocean environments are challenged with maintaining high ph...
The photosynthetic activity of phytoplankton is vital, not only as primary production in the ocean, ...
Six (pico)phytoplankton strains typical for the open oligotrophic oceans were acclimated to differen...
In situ viability of oceanic phytoplankton may be relatively low in open oceans. This is assumed to ...
<div><p>The marine picocyanobacteria <i>Synechococcus</i> and <i>Prochlorococcus</i> numerically dom...
International audienceIron is an essential micronutrient involved in many biological processes and i...
In situ viability of oceanic phytoplankton may be relatively low in open oceans. This is assumed to ...
AbstractSix (pico)phytoplankton strains typical for the open oligotrophic oceans were acclimated to ...
International audienceThe dominance of diatoms in turbulent waters suggests special adaptations to t...
The marine picocyanobacteria Synechococcus and Prochlorococcus numerically dominate open ocean phyto...