Hernández-Bejarano María, Gestri Gaia, Spawls Lana, Nieto-López Francisco, Picker Alexander, Tada Masazumi, Brand Michael, Bovolenta Paola, Wilson Stephen W, Cavodeassi Florencia
Centro de Biología Molecular Severo Ochoa (CSIC-UAM), C/Nicolás Cabrera 1, 28049, Madrid, Spain.
Department of Cell and Developmental Biology, University College London, Gower Street, London WC1 6BT, UK.
Development. 2015 Nov 15;142(22):3933-42. doi: 10.1242/dev.125120. Epub 2015 Oct 1.
The earliest known determinants of retinal nasotemporal identity are the transcriptional regulators Foxg1, which is expressed in the prospective nasal optic vesicle, and Foxd1, which is expressed in the prospective temporal optic vesicle. Previous work has shown that, in zebrafish, Fgf signals from the dorsal forebrain and olfactory primordia are required to specify nasal identity in the dorsal, prospective nasal, optic vesicle. Here, we show that Hh signalling from the ventral forebrain is required for specification of temporal identity in the ventral optic vesicle and is sufficient to induce temporal character when activated in the prospective nasal retina. Consequently, the evaginating optic vesicles become partitioned into prospective nasal and temporal domains by the opposing actions of Fgfs and Shh emanating from dorsal and ventral domains of the forebrain primordium. In absence of Fgf activity, foxd1 expression is established irrespective of levels of Hh signalling, indicating that the role of Shh in promoting foxd1 expression is only required in the presence of Fgf activity. Once the spatially complementary expression of foxd1 and foxg1 is established, the boundary between expression domains is maintained by mutual repression between Foxd1 and Foxg1.
已知最早决定视网膜鼻颞身份的是转录调节因子Foxg1和Foxd1,前者在前脑鼻侧视泡中表达,后者在前脑颞侧视泡中表达。此前的研究表明,在斑马鱼中,来自背侧前脑和嗅觉原基的Fgf信号对于确定背侧、未来的鼻侧视泡的鼻侧身份是必需的。在此,我们表明来自腹侧前脑的Hh信号对于腹侧视泡的颞侧身份确定是必需的,并且当在前脑鼻侧视网膜中激活时足以诱导颞侧特征。因此,通过来自前脑原基背侧和腹侧区域的Fgfs和Shh的相反作用,外翻的视泡被划分为未来的鼻侧和颞侧区域。在没有Fgf活性的情况下,无论Hh信号水平如何,foxd1的表达都会建立,这表明Shh在促进foxd1表达中的作用仅在存在Fgf活性时才是必需的。一旦foxd1和foxg1在空间上互补表达得以建立,表达域之间的边界就通过Foxd1和Foxg1之间的相互抑制得以维持。