Currently the shikimate pathway is reported as a metabolic feature of prokaryotes, ascomycete fungi, apicomplexans, and plants. The plant shikimate pathway enzymes have similarities to prokaryote homologues and are largely active in chloroplasts, suggesting ancestry from the plastid progenitor genome. Toxoplasma gondii, which also possesses an alga-derived plastid organelle, encodes a shikimate pathway with similarities to ascomycete genes, including a five-enzyme pentafunctional arom. These data suggests that the shikimate pathway and the pentafunctional arom either had an ancient origin in the eukaryotes or was conveyed by eukaryote-to-eukaryote horizontal gene transfer (HGT). We expand sampling and analyses of the shikimate pathway genes...
Diatoms derived their plastid from red algae through the secondary endosymbiosis. Most of the endosy...
SummaryFilamentous fungi and oomycetes are eukaryotic microorganisms that grow by producing networks...
Chloroplasts arose from cyanobacteria, mitochondria arose from proteobacteria. Both organelles have ...
Currently the shikimate pathway is reported as a metabolic feature of prokaryotes, ascomycete fungi,...
Currently the shikimate pathway is reported as a metabolic feature of prokaryotes, ascomycete fungi,...
The evolution of microbial eukaryotes, in particular of photosynthetic lineages, is complicated by m...
Background Glutamine synthetase (GS) is essential for ammonium assimilation and the biosynthesis of ...
The endosymbiotic theory proposes the origin of the eukaryotic organelles from once-free-living euba...
The shikimate pathway is essential for survival of the apicomplexan parasites Plasmodium falciparum,...
The shikimate pathway is essential for survival of the apicomplexan parasites Plasmodium falciparum,...
Background: Horizontal gene transfer occurs frequently in prokaryotes and unicellular eukaryotes. An...
The photosynthetic organelle (plastid) originated via primary endosymbiosis in which a phagotrophic ...
AbstractSince the incorporation of mitochondria and chloroplasts (plastids) into the eukaryotic cell...
Background: Horizontal gene transfer (HGT) is a vexing fact of life for microbial phylogeneticists. ...
BACKGROUND:The photosynthetic organelle (plastid) originated via primary endosymbiosis in which a ph...
Diatoms derived their plastid from red algae through the secondary endosymbiosis. Most of the endosy...
SummaryFilamentous fungi and oomycetes are eukaryotic microorganisms that grow by producing networks...
Chloroplasts arose from cyanobacteria, mitochondria arose from proteobacteria. Both organelles have ...
Currently the shikimate pathway is reported as a metabolic feature of prokaryotes, ascomycete fungi,...
Currently the shikimate pathway is reported as a metabolic feature of prokaryotes, ascomycete fungi,...
The evolution of microbial eukaryotes, in particular of photosynthetic lineages, is complicated by m...
Background Glutamine synthetase (GS) is essential for ammonium assimilation and the biosynthesis of ...
The endosymbiotic theory proposes the origin of the eukaryotic organelles from once-free-living euba...
The shikimate pathway is essential for survival of the apicomplexan parasites Plasmodium falciparum,...
The shikimate pathway is essential for survival of the apicomplexan parasites Plasmodium falciparum,...
Background: Horizontal gene transfer occurs frequently in prokaryotes and unicellular eukaryotes. An...
The photosynthetic organelle (plastid) originated via primary endosymbiosis in which a phagotrophic ...
AbstractSince the incorporation of mitochondria and chloroplasts (plastids) into the eukaryotic cell...
Background: Horizontal gene transfer (HGT) is a vexing fact of life for microbial phylogeneticists. ...
BACKGROUND:The photosynthetic organelle (plastid) originated via primary endosymbiosis in which a ph...
Diatoms derived their plastid from red algae through the secondary endosymbiosis. Most of the endosy...
SummaryFilamentous fungi and oomycetes are eukaryotic microorganisms that grow by producing networks...
Chloroplasts arose from cyanobacteria, mitochondria arose from proteobacteria. Both organelles have ...