Organization of the sex-ratio Meiotic Drive Region in Drosophila simulans
- 1 November 2006
- journal article
- Published by Oxford University Press (OUP) in Genetics
- Vol. 174 (3) , 1365-1371
- https://doi.org/10.1534/genetics.105.051755
Abstract
Sex-ratio meiotic drive is the preferential transmission of the X chromosome by XY males, which occurs in several Drosophila species and results in female-biased progeny. Although the trait has long been known to exist, its molecular basis remains completely unknown. Here we report a fine-mapping experiment designed to characterize the major drive locus on a sex-ratio X chromosome of Drosophila simulans originating from the Seychelles (XSR6). This primary locus was found to contain two interacting elements at least, both of which are required for drive expression. One of them was genetically tracked to a tandem duplication containing six annotated genes (Trf2, CG32712, CG12125, CG1440, CG12123, org-1), and the other to a candidate region located ∼110 kb away and spanning seven annotated genes. RT–PCR showed that all but two of these genes were expressed in the testis of both sex-ratio and standard males. In situ hybridization to polytene chromosomes revealed a complete association of the duplication with the sex-ratio trait in random samples of X chromosomes from Madagascar and Reunion.Keywords
This publication has 31 references indexed in Scilit:
- Signature of Selective Sweep Associated With the Evolution of sex-ratio Drive in Drosophila simulansGenetics, 2004
- Plant neocentromeres: fast, focused, and drivenChromosome Research, 2004
- Transmission Ratio Distortion in MiceAnnual Review of Genetics, 2003
- Jelly belly protein activates the receptor tyrosine kinase Alk to specify visceral muscle pioneersNature, 2003
- Closing the (Ran)GAP on segregation distortion in DrosophilaBioEssays, 2003
- TRF2 associates with DREF and directs promoter-selective gene expression in DrosophilaNature, 2002
- Sex Chromosome Meiotic DriveAnnual Review of Ecology and Systematics, 2001
- The role of selfish genetic elements in eukaryotic evolutionNature Reviews Genetics, 2001
- SEGREGATION DISTORTERSAnnual Review of Genetics, 1991
- Segregation Distortion in Drosophila melanogaster: Genetic and Molecular AnalysesThe American Naturalist, 1991