Sex-Specific Splicing of the HoneybeedoublesexGene Reveals 300 Million Years of Evolution at the Bottom of the Insect Sex-Determination Pathway
- 1 November 2007
- journal article
- Published by Oxford University Press (OUP) in Genetics
- Vol. 177 (3) , 1733-1741
- https://doi.org/10.1534/genetics.107.078980
Abstract
Sex-determination mechanisms vary greatly among taxa. It has been proposed that genetic sex-determination pathways evolve in reverse order from the final step in the pathway to the first step. Consistent with this hypothesis, doublesex (dsx), the most downstream gene in the Drosophila sex-determination cascade that determines most sexual phenotypes also determines sex in other dipterans and the silk moth, while the upstream genes vary among these species. However, it is unknown when dsx was recruited to the sex-determination pathway during insect evolution. Furthermore, sex-specific splicing of dsx, by which dsx determines sex, is different in pattern and mechanism between the moth and the fly, raising an interesting question of how these insects have kept the executor of sex determination while allowing flexibility in the means of execution. To address these questions, here we study the dsx gene of the honeybee Apis mellifera, a member of the most basal lineage of holometabolous insects. We report that honeybee dsx is sex-specifically spliced and that it produces both the fly-type and moth-type splicing forms, indicating that the use of different splicing forms of Dsx in controlling sexual differentiation was present in the common ancestor of holometabolous insects. Our data suggest that in ancestral holometabolous insects the female Dsx form is the default and the male form is generated by suppressing the splicing of the female form. Thus, it is likely that the dsx splicing activator system in flies, where the male form is the default, arose during early dipteran evolution.Keywords
This publication has 48 references indexed in Scilit:
- Insights into social insects from the genome of the honeybee Apis melliferaNature, 2006
- Phylogenomic analysis reveals bees and wasps (Hymenoptera) at the base of the radiation of Holometabolous insectsGenome Research, 2006
- Evolution of the complementary sex-determination gene of honey bees: Balancing selection and trans-species polymorphismsGenome Research, 2006
- Isolation and characterization of the Bactrocera oleae genes orthologous to the sex determining Sex-lethal and doublesex genes of Drosophila melanogasterGene, 2005
- Masters change, slaves remainBioEssays, 2002
- DMY is a Y-specific DM-domain gene required for male development in the medaka fishNature, 2002
- Sequence conservation and expression of theSex-lethalhomologue in the flyMegaselia scalarisGenome, 2000
- VIVE LA DIFFÉRENCE: Males vs Females in Flies vs WormsAnnual Review of Genetics, 1996
- Sex determination in the Hymenoptera: a review of models and evidenceHeredity, 1993
- Drosophila doublesex gene controls somatic sexual differentiation by producing alternatively spliced mRNAs encoding related sex-specific polypeptidesPublished by Elsevier ,1989