Caubit X, Nicolas S, Shi D L, Le Parco Y
Institut de Biologie du Développement de Marseille, Laboratoire de Génétique et Physiologie du Développement UMR C 9943, Faculté des Sciences de Luminy, France.
Dev Dyn. 1997 Feb;208(2):139-48. doi: 10.1002/(SICI)1097-0177(199702)208:2<139::AID-AJA1>3.0.CO;2-J.
Adult urodele amphibians such as Pleurodeles waltl are able to regenerate their amputated limbs or tail. The mechanisms implicated in growth control and formation of the blastema are unknown but it has been proposed that regeneration in newts may proceed through reactivation of genes involved in embryonic development. Knowing the role of Wnt genes in the patterning of the primary and secondary axes of the vertebrate embryo, we suspected that some of these genes could be involved in axial pattern during newt tail regeneration. Pwnt-10a gene, cloned from a newt tail regenerate cDNA library, showed an expression pattern compatible with such a role in tail regenerates. Pwnt-10a, which is highly expressed during embryonic development (from gastrula to tailbud-stage) and weakly expressed in the adult tail, is strongly re-expressed during tail regeneration. In the blastemal mesenchyme Pwnt-10a transcripts exhibited a graded distribution along the antero-posterior axis, the mRNA accumulation being maximal in the caudal most part corresponding to the growing zone. These findings strongly support the view that Pwnt-10a may act in cooperation with other factors to control growth and patterning in newt tail regeneration. Until now Wnt-10a was only known to be involved in central nervous system development; our results suggest that this gene may also play a role in other developmental processes.
成年有尾两栖动物,如虎纹钝口螈,能够再生其被截断的肢体或尾巴。与芽基的生长控制和形成相关的机制尚不清楚,但有人提出,蝾螈的再生可能是通过重新激活参与胚胎发育的基因来进行的。鉴于Wnt基因在脊椎动物胚胎的主轴和次轴模式形成中所起的作用,我们推测其中一些基因可能参与了蝾螈尾巴再生过程中的轴向模式形成。从蝾螈尾巴再生cDNA文库中克隆得到的Pwnt - 10a基因,其表达模式与此类基因在尾巴再生中的作用相符。Pwnt - 10a在胚胎发育期间(从原肠胚到尾芽期)高度表达,在成年尾巴中表达较弱,但在尾巴再生期间会强烈重新表达。在芽基间充质中,Pwnt - 10a转录本沿前后轴呈现梯度分布,mRNA积累在对应于生长区的最尾端部分最大。这些发现有力地支持了以下观点:Pwnt - 10a可能与其他因子协同作用,以控制蝾螈尾巴再生中的生长和模式形成。到目前为止,人们只知道Wnt - 10a参与中枢神经系统发育;我们的结果表明,该基因可能在其他发育过程中也发挥作用。