We have sequenced the genome of a second Drosophila species, Drosophila pseudoobscura, and compared this to the genome sequence of Drosophila melanogaster, a primary model organism. Throughout evolution the vast majority of Drosophila genes have remained on the same chromosome arm, but within each arm gene order has been extensively reshuffled, leading to a minimum of 921 syntenic blocks shared between the species. A repetitive sequence is found in the A pseudoobscura genome at many junctions between adjacent syntenic blocks. Analysis of this novel repetitive element family suggests that recombination between offset elements may have given rise to many paracentric inversions, thereby contributing to the shuffling of gene order in the D. pse...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
The genome sequence of a second fruit fly, D. pseudoobscura, presents an opportunity for comparativ...
The recent sequencing of ten new genomes, bringing the total number of sequenced Drosophila genomes ...
BackgroundA primary objective of comparative genomics is to identify genomic elements of functional ...
BackgroundA primary objective of comparative genomics is to identify genomic elements of functional ...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
Drosophila pseudoobscura has been intensively studied by evolutionary biologists for over 70 years. ...
Recent genomic sequencing of 10 additional Drosophila genomes provides a rich resource for comparati...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
Background: A primary objective of comparative genomics is to identify genomic elements of functiona...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
The genome sequence of a second fruit fly, D. pseudoobscura, presents an opportunity for comparativ...
The recent sequencing of ten new genomes, bringing the total number of sequenced Drosophila genomes ...
BackgroundA primary objective of comparative genomics is to identify genomic elements of functional ...
BackgroundA primary objective of comparative genomics is to identify genomic elements of functional ...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
Drosophila pseudoobscura has been intensively studied by evolutionary biologists for over 70 years. ...
Recent genomic sequencing of 10 additional Drosophila genomes provides a rich resource for comparati...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
The rapid evolution of repetitive DNA sequences, including satellite DNA, tandem duplications, and t...
Background: A primary objective of comparative genomics is to identify genomic elements of functiona...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the preci...