Gallitano-Mendel A, Finkelstein R
Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia 19104-6074, USA.
Dev Biol. 1998 Jul 1;199(1):125-37. doi: 10.1006/dbio.1998.8917.
The cephalic gap genes specify anterior head development in the Drosophila embryo. However, the mechanisms of action of these genes remain poorly understood. Here, we focused on the cephalic gap gene orthodenticle (otd), which establishes a specific region of the anterior head. It has been proposed that otd acts in a combinatorial fashion with the cephalic gap genes empty spiracles (ems) and buttonhead (btd) to assign segmental identities in this region. To test this model, we used a heat-inducible transgene to generate pulses of ubiquitous otd expression during embryonic development. Ectopic otd expression caused significant defects in head formation, including the duplication of sensory structures derived from otd-dependent segments. However, these defects do not appear to result from the transformation of head segment identities predicted by the combinatorial model. Instead, they correlate with specific regulatory effects of otd on the expression of the segment polarity genes engrailed (en) and wingless (wg). Ectopic otd expression also caused the loss of head structures derived from the maxillary segment, which lies posterior to the otd domain. We show that this effect is associated with otd repression of the homeotic selector gene Deformed (Dfd).
头部间隙基因决定了果蝇胚胎中头部前端的发育。然而,这些基因的作用机制仍知之甚少。在这里,我们聚焦于头部间隙基因正齿(otd),它确定了头部前端的一个特定区域。有人提出,otd与头部间隙基因空气门(ems)和纽扣头(btd)以组合方式作用,以确定该区域的节段身份。为了验证这个模型,我们使用了一个热诱导转基因,在胚胎发育过程中产生普遍的otd表达脉冲。异位otd表达导致头部形成出现显著缺陷,包括源自otd依赖节段的感觉结构的重复。然而,这些缺陷似乎并非由组合模型预测的头部节段身份转变导致。相反,它们与otd对节段极性基因 engrailed(en)和无翅(wg)表达的特定调节作用相关。异位otd表达还导致源自otd结构域后方的上颌节段的头部结构缺失。我们表明,这种效应与otd对同源异型选择基因变形(Dfd)的抑制有关。