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Dorsoventral patterning of the Xenopus eye involves differential temporal changes in the response of optic stalk and retinal progenitors to Hh signalling

机译:爪蟾眼的腹背面模式涉及视杆和视网膜祖细胞对Hh信号的响应的不同时空变化

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Background Hedgehog (Hh) signals are instrumental to the dorsoventral patterning of the vertebrate eye, promoting optic stalk and ventral retinal fates and repressing dorsal retinal identity. There has been limited analysis, however, of the critical window during which Hh molecules control eye polarity and of the temporal changes in the responsiveness of eye cells to these signals. Results In this study, we used pharmacological and molecular tools to perform stage-specific manipulations of Hh signalling in the developing Xenopus eye. In gain-of-function experiments, most of the eye was sensitive to ventralization when the Hh pathway was activated starting from gastrulaeurula stages. During optic vesicle stages, the dorsal eye became resistant to Hh-dependent ventralization, but this pathway could partially upregulate optic stalk markers within the retina. In loss-of-function assays, inhibition of Hh signalling starting from neurula stages caused expansion of the dorsal retina at the expense of the ventral retina and the optic stalk, while the effects of Hh inhibition during optic vesicle stages were limited to the reduction of optic stalk size. Conclusions Our results suggest the existence of two competence windows during which the Hh pathway differentially controls patterning of the eye region. In the first window, between the neural plate and the optic vesicle stages, Hh signalling exerts a global influence on eye dorsoventral polarity, contributing to the specification of optic stalk, ventral retina and dorsal retinal domains. In the second window, between optic vesicle and optic cup stages, this pathway plays a more limited role in the maintenance of the optic stalk domain. We speculate that this temporal regulation is important to coordinate dorsoventral patterning with morphogenesis and differentiation processes during eye development.
机译:背景刺猬(Hh)信号有助于脊椎动物眼睛的背腹图案,促进视杆和腹侧视网膜命运,并抑制背侧视网膜身份。但是,对于Hh分子控制眼睛极性的关键窗口以及眼细胞对这些信号的响应性的时间变化,只有有限的分析。结果在这项研究中,我们使用药理学和分子工具对非洲爪蟾眼中的Hh信号进行特定阶段的操纵。在功能获得性实验中,当Hh通路从下腹/神经期开始被激活时,大多数眼睛对腹侧敏感。在视泡阶段,背眼变得对Hh依赖的腹侧形成有抵抗力,但是该途径可能会部分上调视网膜内的视杆标记。在功能丧失试验中,从神经元阶段开始抑制Hh信号会导致背侧视网膜的扩张,但以腹侧视网膜和视杆为代价,而在视泡阶段的Hh抑制作用仅限于减少视杆大小。结论我们的结果表明存在两个能力窗口,在此过程中,Hh通路差异地控制了眼部区域的模式。在第一个窗口中,在神经板和视神经囊泡阶段之间,Hh信号传导对眼背腹极性产生全局影响,有助于视神经柄,腹侧视网膜和视网膜背面域的规范。在第二个窗口中,在小泡阶段和杯状阶段之间,该途径在维持视杆区域中的作用更为有限。我们推测,这种时间调节对于在眼睛发育过程中与形态发生和分化过程协调背腹模式很重要。

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