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Molecular evolution of P transposable elements in the Genus drosophila. II. The obscura species group
- Source :
- Journal of molecular evolution. 47(3)
- Publication Year :
- 1998
-
Abstract
- A phylogenetic analysis of P transposable elements in the Drosophila obscura species group is described. Multiple P sequences from each of 10 species were obtained using PCR primers that flank a conserved region of exon 2 of the transposase gene. In general, the P element phylogeny is congruent with the species phylogeny, indicating that the dominant mode of transmission has been vertical, from generation to generation. One manifestation of this is the distinction of P elements from the Old World obscura and subobscura subgroups from those of the New World affinis subgroup. However, the overall distribution of elements within the obscura species group is not congruent with the phylogenetic relationships of the species themselves. There are at least four distinct subfamilies of P elements, which differ in sequence from each other by as much as 34%, and some individual species carry sequences belonging to different subfamilies. P sequences from D. bifasciata are particularly interesting. These sequences belong to two subfamilies and both are distinct from all other P elements identified in this survey. Several mechanisms are postulated to be involved in determining phylogenetic relationships among P elements in the obscura group. In addition to vertical transmission, these include retention of ancestral polymorphisms and horizontal transfer by an unknown mating-independent mechanism.
- Subjects :
- Genetics
biology
Phylogenetic tree
Genes, Insect
biology.organism_classification
Polymerase Chain Reaction
P element
Evolution, Molecular
Phylogenetics
Genus
Molecular evolution
Horizontal gene transfer
DNA Transposable Elements
Animals
Drosophila
Drosophila obscura
Drosophila (subgenus)
Molecular Biology
Ecology, Evolution, Behavior and Systematics
Phylogeny
Subjects
Details
- ISSN :
- 00222844
- Volume :
- 47
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Journal of molecular evolution
- Accession number :
- edsair.doi.dedup.....4dbe2e93a90a490555f1732065e2c285