1] Developmental Genetics, Department Biomedicine, University of Basel, CH-4058 Basel, Switzerland [2].
1] Developmental Genetics, Department Biomedicine, University of Basel, CH-4058 Basel, Switzerland [2] Institut National de la Recherche Agronomique, Génétique Animale et Biologie Intégrative, F-78350 Jouy-en-Josas, France [3].
Nature. 2014 Jul 3;511(7507):46-51. doi: 10.1038/nature13289. Epub 2014 Jun 18.
The large spectrum of limb morphologies reflects the wide evolutionary diversification of the basic pentadactyl pattern in tetrapods. In even-toed ungulates (artiodactyls, including cattle), limbs are adapted for running as a consequence of progressive reduction of their distal skeleton to symmetrical and elongated middle digits with hoofed phalanges. Here we analyse bovine embryos to establish that polarized gene expression is progressively lost during limb development in comparison to the mouse. Notably, the transcriptional upregulation of the Ptch1 gene, which encodes a Sonic hedgehog (SHH) receptor, is disrupted specifically in the bovine limb bud mesenchyme. This is due to evolutionary alteration of a Ptch1 cis-regulatory module, which no longer responds to graded SHH signalling during bovine handplate development. Our study provides a molecular explanation for the loss of digit asymmetry in bovine limb buds and suggests that modifications affecting the Ptch1 cis-regulatory landscape have contributed to evolutionary diversification of artiodactyl limbs.
四肢形态的广泛多样性反映了四足动物中基本五指模式的广泛进化多样化。在偶蹄目动物(包括牛在内的有蹄类动物)中,由于其远端骨骼逐渐减少,对称且细长的中间指骨带有蹄状指节,因此四肢适应奔跑。在这里,我们分析了牛胚胎,以确定与小鼠相比,在四肢发育过程中,极化基因表达逐渐丧失。值得注意的是,编码 Sonic hedgehog (SHH) 受体的 Ptch1 基因的转录上调在牛肢芽间充质中特异性中断。这是由于 Ptch1 顺式调控模块的进化改变,该模块在牛手板发育过程中不再对梯度 SHH 信号做出反应。我们的研究为牛肢芽中失去digit 不对称性提供了分子解释,并表明影响 Ptch1 顺式调控景观的修饰有助于有蹄类动物四肢的进化多样化。