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七鳃鳗视网膜中双皮质素表达的时空模式

Spatiotemporal Pattern of Doublecortin Expression in the Retina of the Sea Lamprey.

作者信息

Fernández-López Blanca, Romaus-Sanjurjo Daniel, Senra-Martínez Pablo, Anadón Ramón, Barreiro-Iglesias Antón, Rodicio María Celina

机构信息

Faculty of Biology, Department of Cell Biology and Ecology, CIBUS, Universidade de Santiago de Compostela Santiago de Compostela, Spain.

出版信息

Front Neuroanat. 2016 Jan 29;10:5. doi: 10.3389/fnana.2016.00005. eCollection 2016.

Abstract

Despite the importance of doublecortin (DCX) for the development of the nervous system, its expression in the retina of most vertebrates is still unknown. The key phylogenetic position of lampreys, together with their complex life cycle, with a long blind larval stage and an active predator adult stage, makes them an interesting model to study retinal development. Here, we studied the spatiotemporal pattern of expression of DCX in the retina of the sea lamprey. In order to characterize the DCX expressing structures, the expression of acetylated α-tubulin (a neuronal marker) and cytokeratins (glial marker) was also analyzed. Tract-tracing methods were used to label ganglion cells. DCX immunoreactivity appeared initially in photoreceptors, ganglion cells and in fibers of the prolarval retina. In larvae smaller than 100 mm, DCX expression was observed in photoreceptors, in cells located in the inner nuclear and inner plexiform layers (IPLs) and in fibers coursing in the nuclear and IPLs, and in the optic nerve (ON). In retinas of premetamorphic and metamorphic larvae, DCX immunoreactivity was also observed in radially oriented cells and fibers and in a layer of cells located in the outer part of the inner neuroblastic layer (INbL) of the lateral retina. Photoreceptors and fibers ending in the outer limitans membrane (OLM) showed DCX expression in adults. Some retinal pigment epithelium cells were also DCX immunoreactive. Immunofluorescence for α-tubulin in premetamorphic larvae showed coexpression in most of the DCX immunoreactive structures. No cells/fibers were found showing DCX and cytokeratins colocalization. The perikaryon of mature ganglion cells is DCX negative. The expression of DCX in sea lamprey retinas suggests that it could play roles in the migration of cells that differentiate in the metamorphosis, in the establishment of connections of ganglion cells and in the development of photoreceptors. Our results also suggest that the radial glia and retinal pigment epithelium cells of lampreys are neurogenic. Comparison of our observations with those reported in gnathostomes reveals similarities and interesting differences probably due to the peculiar development of the sea lamprey retina.

摘要

尽管双皮质素(DCX)对神经系统发育至关重要,但其在大多数脊椎动物视网膜中的表达仍不清楚。七鳃鳗关键的系统发育地位,以及其复杂的生命周期,包括漫长的盲眼幼体阶段和活跃的捕食性成体阶段,使其成为研究视网膜发育的有趣模型。在此,我们研究了海七鳃鳗视网膜中DCX表达的时空模式。为了表征表达DCX的结构,还分析了乙酰化α-微管蛋白(一种神经元标志物)和细胞角蛋白(神经胶质标志物)的表达。采用示踪法标记神经节细胞。DCX免疫反应最初出现在光感受器、神经节细胞和幼体前期视网膜的纤维中。在小于100毫米的幼体中,在光感受器、位于内核层和内网层(IPL)的细胞以及在核层和IPL中穿行的纤维以及视神经(ON)中观察到DCX表达。在前变态和变态幼体的视网膜中,在径向排列的细胞和纤维以及位于外侧视网膜内神经母细胞层(INbL)外部的一层细胞中也观察到DCX免疫反应。在成体中,终止于外界膜(OLM)的光感受器和纤维显示DCX表达。一些视网膜色素上皮细胞也有DCX免疫反应。前变态幼体中α-微管蛋白的免疫荧光显示在大多数DCX免疫反应结构中有共表达。未发现细胞/纤维显示DCX与细胞角蛋白共定位。成熟神经节细胞的胞体DCX呈阴性。海七鳃鳗视网膜中DCX的表达表明,它可能在变态过程中分化的细胞迁移、神经节细胞连接的建立以及光感受器的发育中发挥作用。我们的结果还表明,七鳃鳗的放射状神经胶质细胞和视网膜色素上皮细胞具有神经源性。将我们的观察结果与有颌类动物中报道的结果进行比较,发现了一些相似之处和有趣的差异,这可能归因于海七鳃鳗视网膜的特殊发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30fe/4731500/dc5b2d6739ae/fnana-10-00005-g0001.jpg

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