In modern oceans, eukaryotic phytoplankton is dominated by lineages with red algal-derived plastids such as diatoms, dinoflagellates, and coccolithophores. Despite the ecological importance of these groups and many others representing a huge diversity of forms and lifestyles, we still lack a comprehensive understanding of their evolution and how they obtained their plastids. New hypotheses have emerged to explain the acquisition of red algal-derived plastids by serial endosymbiosis, but the chronology of these putative independent plastid acquisitions remains untested. Here, we establish a timeframe for the origin of red algal-derived plastids under scenarios of serial endosymbiosis, using Bayesian molecular clock analyses applied on a phyl...
The community structure and ecological function of contemporary marine ecosystems are critically dep...
Complex algae form a network of photosynthetic organisms spread across the eukaryotic tree. Among th...
Abstract Secondary plastids derived from green algae occur in chlorarachniophytes, photosynthetic eu...
In modern oceans, eukaryotic phytoplankton is dominated by lineages with red algal-derived plastids ...
In modern oceans, eukaryotic phytoplankton is dominated by lineages with red algal-derived plastids ...
The appearance of photosynthetic eukaryotes (algae and plants) dramatically altered the Earth's ecos...
Photosynthetic eukaryotes have shaped the Earth's biosphere by producing oxygen and converting light...
The early evolutionary history of the chloroplast lineage remains an open question. It is widely acc...
The early evolutionary history of the chloroplast lineage remains an open question. It is widely acc...
The community structure and ecological function of contemporary marine ecosystems are critically dep...
International audiencePhotosynthesis evolved in eukaryotes by the endosymbiosis of a cyanobacterium,...
AbstractPhotosynthetic organelles (plastids) come in many forms and were originally thought to have ...
Plastids (or chloroplasts in plants) are organelles within which photosynthesis takes place in eukar...
The community structure and ecological function of contemporary marine ecosystems are critically dep...
Complex algae form a network of photosynthetic organisms spread across the eukaryotic tree. Among th...
Abstract Secondary plastids derived from green algae occur in chlorarachniophytes, photosynthetic eu...
In modern oceans, eukaryotic phytoplankton is dominated by lineages with red algal-derived plastids ...
In modern oceans, eukaryotic phytoplankton is dominated by lineages with red algal-derived plastids ...
The appearance of photosynthetic eukaryotes (algae and plants) dramatically altered the Earth's ecos...
Photosynthetic eukaryotes have shaped the Earth's biosphere by producing oxygen and converting light...
The early evolutionary history of the chloroplast lineage remains an open question. It is widely acc...
The early evolutionary history of the chloroplast lineage remains an open question. It is widely acc...
The community structure and ecological function of contemporary marine ecosystems are critically dep...
International audiencePhotosynthesis evolved in eukaryotes by the endosymbiosis of a cyanobacterium,...
AbstractPhotosynthetic organelles (plastids) come in many forms and were originally thought to have ...
Plastids (or chloroplasts in plants) are organelles within which photosynthesis takes place in eukar...
The community structure and ecological function of contemporary marine ecosystems are critically dep...
Complex algae form a network of photosynthetic organisms spread across the eukaryotic tree. Among th...
Abstract Secondary plastids derived from green algae occur in chlorarachniophytes, photosynthetic eu...