Lynch Vincent J, Roth Jutta J, Takahashi Kazuhiko, Dunn Casey W, Nonaka Daisuke F, Stopper Geffrey F, Wagner Günter P
Department of Ecology and Evolutionary Biology, Yale University, 165 Prospect Street, New Haven, CT 06551, USA.
Proc Biol Sci. 2004 Nov 7;271(1554):2201-7. doi: 10.1098/rspb.2004.2848.
The evolution of morphological characters is mediated by the evolution of developmental genes. Evolutionary changes can either affect cis-regulatory elements, leading to differences in their temporal and spatial regulation, or affect the coding region. Although there is ample evidence for the importance of cis-regulatory evolution, it has only recently been shown that transcription factors do not remain functionally equivalent during evolution. These results suggest that the evolution of transcription factors may play an active role in the evolution of development. To test this idea we investigated the molecular evolution of two genes essential for the development and function of the mammalian female reproductive organs, HoxA-11 and HoxA-13. We predicted that if coding-region evolution plays an active role in developmental evolution, then these genes should have experienced adaptive evolution at the origin of the mammalian female reproductive system. We report the sequences of HoxA-11 from basal mammalian and amniote taxa and analyse HoxA-11 and HoxA-13 for signatures of adaptive molecular evolution. The data demonstrate that these genes were under strong positive (directional) selection in the stem lineage of therian and eutherian mammals, coincident with the evolution of the uterus and vagina. These results support the idea that adaptive evolution of transcription factors can be an integral part in the evolution of novel structures.
形态特征的进化是由发育基因的进化介导的。进化变化既可以影响顺式调控元件,导致其时空调控的差异,也可以影响编码区。尽管有充分的证据表明顺式调控进化的重要性,但直到最近才发现转录因子在进化过程中并不保持功能等同。这些结果表明,转录因子的进化可能在发育进化中发挥积极作用。为了验证这一观点,我们研究了两个对哺乳动物雌性生殖器官的发育和功能至关重要的基因——HoxA - 11和HoxA - 13的分子进化。我们预测,如果编码区进化在发育进化中发挥积极作用,那么这些基因应该在哺乳动物雌性生殖系统起源时经历了适应性进化。我们报告了基础哺乳动物和羊膜动物类群中HoxA - 11的序列,并分析了HoxA - 11和HoxA - 13的适应性分子进化特征。数据表明,这些基因在有胎盘类哺乳动物和真兽类哺乳动物的干群中受到强烈的正向(定向)选择,这与子宫和阴道的进化相一致。这些结果支持了转录因子的适应性进化可能是新结构进化不可或缺的一部分这一观点。