Richardson M K, Carl T F, Hanken J, Elinson R P, Cope C, Bagley P
Department of Anatomy, St George's Hospital Medical School, London, UK.
J Anat. 1998 Apr;192 ( Pt 3)(Pt 3):379-90. doi: 10.1046/j.1469-7580.1998.19230379.x.
The treefrog Eleutherodactylus coqui is a direct developer--it has no tadpole stage. The limb buds develop earlier than in metamorphosing species (indirect developers, such as Xenopus laevis). Previous molecular studies suggest that at least some mechanisms of limb development in E. coqui are similar to those of other vertebrates and we wished to see how limb morphogenesis in this species compares with that in other vertebrates. We found that the hind limb buds are larger and more advanced than the forelimbs at all stages examined, thus differing from the typical amniote pattern. The limb buds were also small compared to those in the chick. Scanning and transmission electron microscopy showed that although the apical ectoderm is thickened, there was no apical ectodermal ridge (AER). In addition, the limb buds lacked the dorsoventral flattening seen in many amniotes. These findings could suggest a mechanical function for the AER in maintaining dorsoventral flattening, although not all data are consistent with this view. Removal of distal ectoderm from E. coqui hindlimb buds does not stop outgrowth, although it does produce anterior defects in the skeletal pattern. The defects are less severe when the excisions are performed earlier. These results contrast with the chick, in which AER excision leads to loss of distal structures. We suggest that an AER was present in the common ancestor of anurans and amniotes and has been lost in at least some direct developers including E. coqui.
斑腿树蛙(Eleutherodactylus coqui)是一种直接发育型动物——它没有蝌蚪阶段。其肢体芽的发育比变态发育物种(间接发育型,如非洲爪蟾Xenopus laevis)更早。先前的分子研究表明,斑腿树蛙肢体发育的至少一些机制与其他脊椎动物相似,我们希望了解该物种的肢体形态发生与其他脊椎动物相比如何。我们发现,在所检查的所有阶段,后肢芽都比前肢更大且更先进,因此与典型的羊膜动物模式不同。与鸡的肢体芽相比,其肢体芽也较小。扫描电子显微镜和透射电子显微镜显示,虽然顶端外胚层增厚,但没有顶端外胚层嵴(AER)。此外,肢体芽缺乏许多羊膜动物中所见的背腹扁平。这些发现可能表明AER在维持背腹扁平方面具有机械功能,尽管并非所有数据都与这一观点一致。从斑腿树蛙后肢芽去除远端外胚层不会阻止其生长,尽管这确实会在骨骼模式中产生前部缺陷。切除越早,缺陷越不严重。这些结果与鸡的情况形成对比,在鸡中切除AER会导致远端结构丧失。我们认为,AER存在于无尾目动物和羊膜动物的共同祖先中,并且在至少一些直接发育型动物(包括斑腿树蛙)中已经消失。