Herbrand H, Guthrie S, Hadrys T, Hoffmann S, Arnold H H, Rinkwitz-Brandt S, Bober E
Department of Cell and Molecular Biology, Technical University Braunschweig, Braunschweig, Germany.
Development. 1998 Feb;125(4):645-54. doi: 10.1242/dev.125.4.645.
The early stages of otic placode development depend on signals from neighbouring tissues including the hindbrain. The identity of these signals and of the responding placodal genes, however, is not known. We have identified a chick homeobox gene cNkx5-1, which is expressed in the otic placode beginning at stage 10 and exhibits a dynamic expression pattern during formation and further differentiation of the otic vesicle. In a series of heterotopic transplantation experiments, we demonstrate that cNkx5-1 can be activated in ectopic positions. However, significant differences in otic development and cNkx5-1 gene activity were observed when placodes were transplanted into the more rostral positions within the head mesenchyme or into the wing buds of older hosts. These results indicate that only the rostral tissues were able to induce and/or maintain ear development. Ectopically induced cNkx5-1 expression always reproduced the endogenous pattern within the lateral wall of the otocyst that is destined to form vestibular structures. In contrast, cPax2 which is expressed in the medial wall of the early otic vesicle later forming the cochlea never resumed its correct expression pattern after transplantation. Our experiments illustrate that only some aspects of gene expression and presumably pattern formation during inner ear development can be established and maintained ectopically. In particular, the dorsal vestibular structures seem to be programmed earlier and differently from the ventral cochlear part.
耳基板发育的早期阶段依赖于来自包括后脑在内的邻近组织的信号。然而,这些信号以及响应的基板基因的身份尚不清楚。我们鉴定出一种鸡源同源框基因cNkx5-1,它从第10阶段开始在耳基板中表达,并在耳泡形成和进一步分化过程中呈现动态表达模式。在一系列异位移植实验中,我们证明cNkx5-1可以在异位位置被激活。然而,当将基板移植到头部间充质内更靠前的位置或更老宿主的翅芽中时,观察到耳发育和cNkx5-1基因活性存在显著差异。这些结果表明,只有靠前的组织能够诱导和/或维持耳的发育。异位诱导的cNkx5-1表达总是在注定形成前庭结构的耳囊侧壁内重现内源性模式。相比之下,在早期耳泡的内侧壁表达、后来形成耳蜗的cPax2在移植后从未恢复其正确的表达模式。我们的实验表明,在内耳发育过程中,只有基因表达的某些方面以及推测的模式形成可以在异位情况下建立和维持。特别是,背侧前庭结构似乎比腹侧耳蜗部分更早且以不同方式被编程。