Background: How photosynthetic organelles or plastids were acquired by diverse eukaryotes is among the most hotly debated topics in broad scale eukaryotic evolution. The history of plastid endosymbioses commonly is interpreted under the "chromalveolate" hypothesis which requires numerous plastid losses from certain heterotrophic groups that now are entirely aplastidic. In this context discoveries of putatively algal genes in plastid-lacking protists have been cited as evidence of gene transfer from a photosynthetic endosymbiont that subsequently was lost completely. Here we examine this evidence as it pertains to the chromalveolate hypothesis through genome-level statistical analyses of similarity scores from queries with two diatoms Phaeod...
In photosynthetic eukaryotes, many genes were transferred from plastids or algal endosymbionts to nu...
Background: Heterokont algae, together with cryptophytes, haptophytes and some alveolates, possess r...
Background: Ancient endosymbioses are responsible for the origins of mitochondria and plastids, and ...
Background: How photosynthetic organelles, or plastids, were acquired by diverse eukaryotes is among...
In photosynthetic eukaryotes, many genes were transferred from plastids or algal endosymbionts to nu...
SummaryPlantae (as defined by Cavalier-Smith, 1981) [1] plastids evolved via primary endosymbiosis w...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
According to the chromalveolate hypothesis (Cavalier-Smith T. 1999. Principles of protein and lipid ...
<p><strong>Talk</strong> - Phylogenomic Revisit for Green Contribution to Diatoms</p> <p><strong>Mee...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
SummaryA single cyanobacterial primary endosymbiosis that occurred approximately 1.5 billion years a...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
Algae with secondary plastids of a red algal origin, such as ochrophytes (photosynthetic stramenopil...
In photosynthetic eukaryotes, many genes were transferred from plastids or algal endosymbionts to nu...
Background: Heterokont algae, together with cryptophytes, haptophytes and some alveolates, possess r...
Background: Ancient endosymbioses are responsible for the origins of mitochondria and plastids, and ...
Background: How photosynthetic organelles, or plastids, were acquired by diverse eukaryotes is among...
In photosynthetic eukaryotes, many genes were transferred from plastids or algal endosymbionts to nu...
SummaryPlantae (as defined by Cavalier-Smith, 1981) [1] plastids evolved via primary endosymbiosis w...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
According to the chromalveolate hypothesis (Cavalier-Smith T. 1999. Principles of protein and lipid ...
<p><strong>Talk</strong> - Phylogenomic Revisit for Green Contribution to Diatoms</p> <p><strong>Mee...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
SummaryA single cyanobacterial primary endosymbiosis that occurred approximately 1.5 billion years a...
Chromist algae include diverse photosynthetic organisms of great ecological and social importance. D...
Algae with secondary plastids of a red algal origin, such as ochrophytes (photosynthetic stramenopil...
In photosynthetic eukaryotes, many genes were transferred from plastids or algal endosymbionts to nu...
Background: Heterokont algae, together with cryptophytes, haptophytes and some alveolates, possess r...
Background: Ancient endosymbioses are responsible for the origins of mitochondria and plastids, and ...