Distinct developmental mechanisms underlie the evolutionary diversification of Drosophila sex combs
- 24 March 2009
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (12) , 4764-4769
- https://doi.org/10.1073/pnas.0807875106
Abstract
Similar selective pressures can lead to independent origin of similar morphological structures in multiple evolutionary lineages. Developmental mechanisms underlying convergent evolution remain poorly understood. In this report, we show that similar sex comb morphology in closely related Drosophila species is produced by different cellular mechanisms. The sex comb is a recently evolved, male-specific array of modified bristles derived from transverse bristle rows found on the first thoracic legs in both sexes. “Longitudinal” sex combs oriented along the proximo-distal leg axis evolved independently in several Drosophila lineages. We show that in some of these lineages, sex combs originate as one or several transverse bristle rows that subsequently rotate 90° and align to form a single longitudinal row. In other species, bristle cells that make up the sex combs arise in their final longitudinal orientation. Thus, sex combs can develop through either sex-specific patterning of bristle precursor cells or male-specific morphogenesis of sexually monomorphic precursors. Surprisingly, the two mechanisms produce nearly identical morphology in some species. Phylogenetic analysis shows that each of these mechanisms has probably evolved repeatedly in different Drosophila lineages, suggesting that selection can recruit different cellular processes to produce similar functional solutions.Keywords
This publication has 40 references indexed in Scilit:
- Sex Combs are Important for Male Mating Success in Drosophila melanogasterBehavior Genetics, 2008
- Sex-specific expression of a HOX gene associated with rapid morphological evolutionDevelopmental Biology, 2007
- WHEN ONTOGENY REVEALS WHAT PHYLOGENY HIDES: GAIN AND LOSS OF HORNS DURING DEVELOPMENT AND EVOLUTION OF HORNED BEETLESEvolution, 2006
- Parallel genetic origins of pelvic reduction in vertebratesProceedings of the National Academy of Sciences, 2006
- Delta and Hairy establish a periodic prepattern that positions sensory bristles in Drosophila legsDevelopmental Biology, 2006
- A hidden program in Drosophila peripheral neurogenesis revealed: fundamental principles underlying sensory organ diversityDevelopmental Biology, 2004
- Cellular basis of wing size variation in Drosophila melanogaster: a comparison of latitudinal clines on two continentsHeredity, 2000
- Floral Evolution, Development, and Convergence: The Hierarchical- Significance HypothesisInternational Journal of Plant Sciences, 1997
- Behavioral role of the sexcombs inDrosophila melanogaster andDrosophila simulansBehavior Genetics, 1977
- Cell lineage and differentiation on the male foreleg of Drosophila melanogasterDevelopmental Biology, 1962