Heterokont algae are significant contributors to marine primary productivity. These algae have a photosynthetic machinery that shares many common features with that of Viridiplantae (green algae and land plants). Here we demonstrate, however, that the photosynthetic machinery of heterokont algae responds to light fundamentally differently than that of Viridiplantae. While exposure to high light leads to electron accumulation within the photosynthetic electron transport chain in Viridiplantae, this is not the case in heterokont algae. We use this insight to manipulate the photosynthetic electron transport chain and demonstrate that heterokont algae can dynamically distribute excitation energy between the two types of photosystems. We suggest...
The marine environment is an important habitat where many processes occur that affect life condition...
Abstract Background Cyanobacteria are ideal model organisms to exploit photosynthetically derived el...
Photosynthetic organisms have various pigments enabling them to adapt to various light environments....
Heterokont algae are significant contributors to marine primary productivity. These algae have a pho...
Several microalgae belonging to the phylum of Heterokontophyta have recently been studied with incre...
Part IV : Chloroplast PhotophysiologyInternational audiencePhotosynthetic organisms display a remark...
AbstractUnicellular algae are characterized by an extreme flexibility with respect to their response...
International audienceUnicellular algae are characterized by an extreme flexibility with respect to ...
Microalgae are photosynthetic organisms which cover an extraordinary phylogenic diversity and have c...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
Abstract Global photosynthesis consumes ten times more CO 2 than net anthropogenic emissions, and mi...
Cyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation o...
Cyanobacteria have evolved elaborate electron transport pathways to carry out photosynthesis and res...
AbstractOxygenic photosynthesis uses light as energy source to generate an oxidant powerful enough t...
The marine environment is an important habitat where many processes occur that affect life condition...
Abstract Background Cyanobacteria are ideal model organisms to exploit photosynthetically derived el...
Photosynthetic organisms have various pigments enabling them to adapt to various light environments....
Heterokont algae are significant contributors to marine primary productivity. These algae have a pho...
Several microalgae belonging to the phylum of Heterokontophyta have recently been studied with incre...
Part IV : Chloroplast PhotophysiologyInternational audiencePhotosynthetic organisms display a remark...
AbstractUnicellular algae are characterized by an extreme flexibility with respect to their response...
International audienceUnicellular algae are characterized by an extreme flexibility with respect to ...
Microalgae are photosynthetic organisms which cover an extraordinary phylogenic diversity and have c...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
Abstract Global photosynthesis consumes ten times more CO 2 than net anthropogenic emissions, and mi...
Cyanobacteria dominate the world's oceans where iron is often barely detectable. One manifestation o...
Cyanobacteria have evolved elaborate electron transport pathways to carry out photosynthesis and res...
AbstractOxygenic photosynthesis uses light as energy source to generate an oxidant powerful enough t...
The marine environment is an important habitat where many processes occur that affect life condition...
Abstract Background Cyanobacteria are ideal model organisms to exploit photosynthetically derived el...
Photosynthetic organisms have various pigments enabling them to adapt to various light environments....