Publication | Open Access
Functional Evolution of a cis-Regulatory Module
213
Citations
36
References
2005
Year
Functional DivergenceReverse GeneticsGeneticsGenomic MechanismFunctional EvolutionDrosophila SpeciesGene Regulatory NetworkGenomicsGene StructureFunctional RegulationGene EvolutionGene ExpressionFunctional GenomicsSignal TransductionNatural SciencesEvolutionary BiologyGene RegulationRegulatory Network ModellingSystems BiologyMedicine
Lack of knowledge about how regulatory regions evolve in relation to their structure-function may limit the utility of comparative sequence analysis in deciphering cis-regulatory sequences. To address this we applied reverse genetics to carry out a functional genetic complementation analysis of a eukaryotic cis-regulatory module-the even-skipped stripe 2 enhancer-from four Drosophila species. The evolution of this enhancer is non-clock-like, with important functional differences between closely related species and functional convergence between distantly related species. Functional divergence is attributable to differences in activation levels rather than spatiotemporal control of gene expression. Our findings have implications for understanding enhancer structure-function, mechanisms of speciation and computational identification of regulatory modules.
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