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Morphogenesis and axis specification occur in parallel during optic cup and optic fissure formation differentially modulated by BMP and Wnt

机译:形态发生和轴规格在视杯和视裂形成过程中并行发生并由BMP和Wnt进行差异调节

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摘要

Optic cup morphogenesis is an intricate process. Especially, the formation of the optic fissure is not well understood. Persisting optic fissures, termed coloboma, are frequent causes for congenital blindness. Even though the defective fusion of the fissure margins is the most acknowledged reason for coloboma, highly variable morphologies of coloboma phenotypes argue for a diverse set of underlying pathomechanisms. Here, we investigate optic fissure morphogenesis in zebrafish to identify potential morphogenetic defects resulting in coloboma. We show that the formation of the optic fissure depends on tissue flow movements, integrated into the bilateral distal epithelial flow forming the optic cup. On the temporal side, the distal flow translates into a ventral perpendicular flow, shaping the temporal fissure margin. On the nasal side, however, the distal flow is complemented by tissue derived from the optic stalk, shaping the nasal fissure margin. Notably, a distinct population of TGFβ-signalling positive cells is translocated from the optic stalk into both fissure margins. Furthermore, we show that induced BMP signalling as well as Wnt-signalling inhibition result in morphogenetic defects of the optic fissure. Our data also indicate that morphogenesis is crucial for a proper positioning of pre-specified dorsal–ventral optic cup domains.
机译:视杯形态发生是一个复杂的过程。特别是,光学裂缝的形成还不是很清楚。持续存在的视神经裂痕称为大肠癌,是先天性失明的常见原因。尽管裂隙边缘融合不良是引起大肠癌的最公认原因,但大肠癌表型的高度可变的形态仍提出了多种潜在的病理机制。在这里,我们调查斑马鱼的视裂形态发生,以确定潜在的形态发生缺陷,导致coloboma。我们显示视裂的形成取决于组织流的运动,并整合到形成视杯的双侧远端上皮流中。在颞侧,远端血流转化为腹侧垂直血流,从而形成颞裂边缘。然而,在鼻侧,远侧血流由视杆柄组织补充,形成鼻裂边缘。值得注意的是,TGFβ信号传递阳性细胞的独特群体从视杆转移到两个裂隙边缘。此外,我们表明诱导BMP信号以及Wnt信号抑制导致视裂的形态发生缺陷。我们的数据还表明,形态发生对于预先指定的背-腹视神经杯区域的正确定位至关重要。

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