Torok M A, Gardiner D M, Shubin N H, Bryant S V
Department of Developmental and Cell Biology, University of California, Irvine, Irvine, California, 92612, USA.
Dev Biol. 1998 Aug 15;200(2):225-33. doi: 10.1006/dbio.1998.8956.
Hox genes play a critical role in the development of the vertebrate axis and limbs, and previous studies have implicated them in the specification of positional identity, the control of growth, and the timing of differentiation. Axolotl limbs offer an opportunity to distinguish these alternatives because the sequence of skeletal differentiation is reversed along the anterior-posterior axis relative to that of other tetrapods. We report that during early limb development, expression patterns of HoxD genes in axolotls resemble those in amniotes and anuran amphibians. At later stages, the anterior boundary of Hoxd-11 expression is conserved with respect to morphological landmarks, but there is no anterior-distal expansion of the posterior domain of Hoxd-11 expression similar to that observed in mice and chicks. Since axolotls do not form an expanded paddle-like handplate prior to digit differentiation, we suggest that anterior expansion of expression in higher vertebrates is linked to the formation of the handplate, but is clearly not necessary for digit differentiation. We also show that the 5' HoxD genes are reexpressed during limb regeneration. The change in the expression pattern of Hoxd-11 during the course of regeneration is consistent with the hypothesis that the distal tip of the regenerate is specified first, followed by intercalation of intermediate levels of the pattern. Both Hoxd-8 and Hoxd-10 are expressed in non-regenerating wounds, but Hoxd-11 is specific for regeneration. It is also expressed in the posterior half of nerve-induced supernumerary outgrowths.
Hox基因在脊椎动物轴和肢体的发育中起着关键作用,先前的研究表明它们与位置身份的确定、生长的控制以及分化的时间有关。美西螈的肢体为区分这些可能性提供了一个机会,因为相对于其他四足动物,其骨骼分化顺序沿前后轴是相反的。我们报告称,在肢体早期发育过程中,美西螈HoxD基因的表达模式类似于羊膜动物和无尾两栖动物。在后期阶段,Hoxd-11表达的前边界相对于形态学标志是保守的,但Hoxd-11表达的后结构域没有出现类似于在小鼠和小鸡中观察到的向远端前部扩展的情况。由于美西螈在指分化之前不会形成扩展的桨状手板,我们认为高等脊椎动物中表达的前部扩展与手板的形成有关,但显然不是指分化所必需的。我们还表明,5'HoxD基因在肢体再生过程中会重新表达。Hoxd-11在再生过程中表达模式的变化与以下假设一致,即再生体的远端首先被确定,随后是模式中间水平的插入。Hoxd-8和Hoxd-10在非再生伤口中均有表达,但Hoxd-11对再生具有特异性。它也在神经诱导的多余生长物的后半部分表达。