Ludwig Michael Z, Palsson Arnar, Alekseeva Elena, Bergman Casey M, Nathan Janaki, Kreitman Martin
Department of Ecology and Evolution, University of Chicago, Illinois, USA.
PLoS Biol. 2005 Apr;3(4):e93. doi: 10.1371/journal.pbio.0030093. Epub 2005 Mar 15.
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.
对于调控区域如何与其结构功能相关联地进化缺乏了解,可能会限制比较序列分析在解读顺式调控序列方面的效用。为了解决这一问题,我们应用反向遗传学对来自四种果蝇物种的一个真核顺式调控模块——偶数跳棋条纹2增强子——进行了功能遗传互补分析。该增强子的进化不具有钟型特征,在亲缘关系较近的物种之间存在重要的功能差异,而在亲缘关系较远的物种之间存在功能趋同。功能差异归因于激活水平的差异,而非基因表达的时空控制。我们的研究结果对于理解增强子的结构功能、物种形成机制以及调控模块的计算识别具有重要意义。