ABSTRACT Separate germline and somatic genomes are found in numerous lineages across the eukaryotic tree of life, often separated into distinct tissues (e.g., in plants, animals, and fungi) or distinct nuclei sharing a common cytoplasm (e.g., in ciliates and some foraminifera). In ciliates, germline-limited (i.e., micronuclear-specific) DNA is eliminated during the development of a new somatic (i.e., macronuclear) genome in a process that is tightly linked to large-scale genome rearrangements, such as deletions and reordering of protein-coding sequences. Most studies of germline genome architecture in ciliates have focused on the model ciliates Oxytricha trifallax, Paramecium tetraurelia, and Tetrahymena thermophila, for which the complete ...
In most lineages, diversity among gene family members results from gene duplication followed by sequ...
The emergence of robust single-cell ‘omics techniques enables studies of uncultivable species, allow...
ABSTRACT Chromosome rearrangements occur in a variety of eukaryotic life cycles, including during th...
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...
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...
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...
The emergence of robust single-cell 'omics techniques enables studies of uncultivable species, allow...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
Abstract Ciliates are microbial eukaryotes that separate their nuclear functions into a germline mic...
Ciliates are prototypical, conventionally unicellular eukaryotes with separate germline and somatic ...
Ciliates are model organisms for studying programmed genome rearrangement because each cell houses t...
A single-celled ciliate, Chilodonella uncinata is an emerging model species for understanding genome...
In most lineages, diversity among gene family members results from gene duplication followed by sequ...
The emergence of robust single-cell ‘omics techniques enables studies of uncultivable species, allow...
ABSTRACT Chromosome rearrangements occur in a variety of eukaryotic life cycles, including during th...
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...
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...
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...
The emergence of robust single-cell 'omics techniques enables studies of uncultivable species, allow...
Ciliates, a eukaryotic clade that is over 1 billion years old, are defined by division of genome fun...
Abstract Ciliates are microbial eukaryotes that separate their nuclear functions into a germline mic...
Ciliates are prototypical, conventionally unicellular eukaryotes with separate germline and somatic ...
Ciliates are model organisms for studying programmed genome rearrangement because each cell houses t...
A single-celled ciliate, Chilodonella uncinata is an emerging model species for understanding genome...
In most lineages, diversity among gene family members results from gene duplication followed by sequ...
The emergence of robust single-cell ‘omics techniques enables studies of uncultivable species, allow...
ABSTRACT Chromosome rearrangements occur in a variety of eukaryotic life cycles, including during th...