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Analysis of the morphogenesis and cell proliferation in the retina of a pleuronectiform fish, the turbot psetta maxima (Pleuronectiformes: Teleostei)

机译:分析胸膜ur形鱼(大菱)的视网膜的形态发生和细胞增殖(Pleuronectiformes:Teleostei)

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摘要

The morphogenesis and cell proliferation in the retina of turbot (Psetta maxima, Pleuronectiformes: Teleostei) from embryo through metamorphosis have been examined by using proliferating cell nuclear antigen (PCNA)-immunohistochemistry and general histological procedures. In the embryonic retina, cell proliferation and spatial cell reorganization form the anlage of the pigment epithelium and neural retina. Neurogenesis begins around hatching in the temporal retina, dorsal to the optic nerve exit, and then a wave of cell differentiation spreads to the nasal retina to yield a laminated retina by the end of the prolarval turbot stage. Germinal zones in the differentiated retina persist as a rim at the retinal margin, as well as surrounding the optic fissure in premetamorphic and metamorphic turbot larvae. In these zones, progenitor cells with different morphologies show a similar spatial arrangement, which suggests that they have a similar retinogenic potential. During metamorphosis, asymmetric proliferative activity in turbot germinal zones is associated with a marked expansion of the retinal tissue. Scattered stem cells in the laminated retina, related to the lineage of rod photoreceptors, were also observed both in large premetamorphic larvae and metamorphic turbots. The proliferative activity of these cells increases considerably during metamorphosis, when rod photoreceptors become morphologically differentiated.
机译:通过使用增殖细胞核抗原(PCNA)-免疫组织化学和一般组织学方法检查了从胚胎到变态的大菱t(Psetta maxima,Pleuronectiformes:Teleostei)视网膜中的形态发生和细胞增殖。在胚胎视网膜中,细胞增殖和空间细胞重组形成了色素上皮和神经视网膜的结合。神经发生始于颞部视网膜的孵化,视神经出口的背侧,然后一波细胞分化波扩散到鼻视网膜,从而在发育迟缓阶段结束时产生了叠层的视网膜。分化后的视网膜中的生殖区在视网膜边缘处仍为边缘,并在变态和变态的turbo类幼虫周围存在视裂隙。在这些区域中,具有不同形态的祖细胞显示出相似的空间排列,这表明它们具有相似的视网膜发生潜能。在变态过程中,大菱形生发区的不对称增殖活性与视网膜组织的明显扩张有关。在大型前变态幼虫和变态菱ts中也观察到了与视网膜杆感光细胞谱系有关的层状视网膜中散在的干细胞。当杆感光细胞在形态上分化时,这些细胞在变态过程中的增殖活性显着增加。

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