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斑马鱼胚胎中视杆和视锥光感受器的发育模式

Developmental patterning of rod and cone photoreceptors in embryonic zebrafish.

作者信息

Raymond P A, Barthel L K, Curran G A

机构信息

Department of Anatomy and Cell Biology, University of Michigan Medical School, Ann Arbor 48109-0616, USA.

出版信息

J Comp Neurol. 1995 Sep 4;359(4):537-50. doi: 10.1002/cne.903590403.

Abstract

Cone photoreceptors in the zebrafish retina are arranged in a crystalline lattice, with each spectral subtype at a specific position in the array; rod photoreceptors are inserted around the cones. Patterning events and developmental mechanisms that lead to the formation of the cone mosaic are not known. To begin investigating this issue, we examined the initial stages of opsin expression in zebrafish embryos by in situ hybridization with goldfish opsin cRNA probes to determine how and when the cone mosaic pattern arises. We found both differences and similarities in the spatiotemporal patterns of rod and cone development, which suggest the following: 1) Expression of opsin message (including rod opsin, blue and red cone opsins) was found in a ventral patch of retina located nasal to the choroid fissure. 2) The cone mosaic pattern was generated by a crystallization-like process initiated in the precocial ventral patch and secondarily in nasal retina, which then swept like a wave into dorsotemporal retina. 3) The remainder of the retina, suggesting that these precocial rods might differ from typical rods. 4) Developmental maturation of rods in zebrafish, as reflected by expression of opsin, may be accelerated compared to cones, which are thought to become postmitotic before rods. These data are consistent with a model in which lateral inductive interactions among differentiating photoreceptors lead to patterning of the array.

摘要

斑马鱼视网膜中的视锥光感受器呈晶体晶格排列,每种光谱亚型在阵列中的特定位置;视杆光感受器插入视锥周围。导致视锥镶嵌形成的模式形成事件和发育机制尚不清楚。为了开始研究这个问题,我们通过用金鱼视蛋白cRNA探针进行原位杂交,检查了斑马鱼胚胎中视蛋白表达的初始阶段,以确定视锥镶嵌模式是如何以及何时出现的。我们发现视杆和视锥发育的时空模式既有差异又有相似之处,这表明:1)在脉络膜裂孔鼻侧的视网膜腹侧斑块中发现了视蛋白信息的表达(包括视杆视蛋白、蓝视锥和红视锥视蛋白)。2)视锥镶嵌模式是由早熟的腹侧斑块以及随后鼻侧视网膜中启动的类似结晶的过程产生的,然后像波浪一样席卷到背颞侧视网膜。3)视网膜的其余部分,表明这些早熟的视杆可能与典型视杆不同。4)与视锥相比,斑马鱼视杆的发育成熟(以视蛋白表达为反映)可能加速了,视锥被认为在视杆之前进入有丝分裂后期。这些数据与一个模型一致,即分化的光感受器之间的侧向诱导相互作用导致了阵列的模式形成。

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