Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome function between transcriptionally inactive germline micronuclei and functional somatic macronuclei. To date, most analyses of gene family evolution have been limited to cultivable model lineages (e.g., Tetrahymena, Paramecium, Oxytricha, and Stylonychia). Here, we focus on the uncultivable Karyorelictea and its understudied sister class Heterotrichea, which represent two extremes in genome architecture.Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome function between transcriptionally inactive germline micronuclei and functional somatic macronuclei. To date, most analyses of gene family evolution ...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Ciliates are model organisms for studying programmed genome rearrangement because each cell houses t...
ABSTRACT Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of g...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
The emergence of robust single-cell 'omics techniques enables studies of uncultivable species, allow...
Ciliates are a diverse clade of unicellular eukaryotes that differ in size, morphology, and nuclear ...
Ciliates are a diverse clade of unicellular eukaryotes that differ in size, morphology, and nuclear ...
ABSTRACT Separate germline and somatic genomes are found in numerous lineages across the eukaryotic ...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
The emergence of robust single-cell ‘omics techniques enables studies of uncultivable species, allow...
In most lineages, diversity among gene family members results from gene duplication followed by sequ...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Ciliates are model organisms for studying programmed genome rearrangement because each cell houses t...
ABSTRACT Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of g...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
The emergence of robust single-cell 'omics techniques enables studies of uncultivable species, allow...
Ciliates are a diverse clade of unicellular eukaryotes that differ in size, morphology, and nuclear ...
Ciliates are a diverse clade of unicellular eukaryotes that differ in size, morphology, and nuclear ...
ABSTRACT Separate germline and somatic genomes are found in numerous lineages across the eukaryotic ...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
The emergence of robust single-cell ‘omics techniques enables studies of uncultivable species, allow...
In most lineages, diversity among gene family members results from gene duplication followed by sequ...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of l...
Ciliates are model organisms for studying programmed genome rearrangement because each cell houses t...