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大西洋比目鱼(Hippoglossus hippoglossus)眼球迁移过程中视网膜光感受器的色觉组织。

Chromatic organization of retinal photoreceptors during eye migration of Atlantic halibut (Hippoglossus hippoglossus).

机构信息

Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia, Canada.

Department of Biology, University of Victoria, Victoria, British Columbia, Canada.

出版信息

J Comp Neurol. 2023 Feb;531(2):256-280. doi: 10.1002/cne.25423. Epub 2022 Oct 10.

Abstract

The retinas of fishes often have single and double cone photoreceptors that are organized in lattice-like mosaics. In flatfishes experiencing eye migration (i.e., the metamorphic process whereby one eye migrates to the other side of the head), the hexagonal lattice of single cones present in the larva undergoes major restructuring resulting in a dominant square mosaic postmetamorphosis consisting of four double cones surrounding each single cone. The expression of different opsin types during eye migration has not been examined despite its importance in understanding photoreceptor plasticity and whether cell fate (in terms of spectral phenotype) could influence square mosaic formation. Here, we probed the retina of Atlantic halibut undergoing eye migration for opsin expression using two antibodies, AHblue and AB5407, that labeled short wavelength sensitive 2 (SWS2) opsin and longer wavelength (predominantly middle wavelength sensitive, RH2) opsins, respectively. Throughout the retina, double and triple cones labeled with AB5407 exclusively, whereas the vast majority of single cones labeled with AHblue. A minority (<5%) of single cones in the square mosaic of the centroventral retina labeled with AB5407. In regions of mosaic transition and near peripheral growth zones, some single cones co-expressed at least two opsins as they labeled with both antibodies. Short wavelength (SWS2 expressing, or S) cones formed a nonrandom mosaic gradient from central to dorsal retina in a region dominated by the larval single cone mosaic. Our results demonstrate the expression of at least two opsins throughout the postmetamorphic retina and suggest opsin switching as a mechanism to create new cone spectral phenotypes. In addition, the S cone gradient at the onset of eye migration may underlie a plastic, cell induction mechanism by which a cone's phenotype determines that of its neighbors and the formation of the square mosaic.

摘要

鱼类的视网膜通常具有单一和双重圆锥状光感受器,它们以晶格状镶嵌排列。在经历眼睛迁移(即一只眼睛迁移到头的另一侧的变态过程)的比目鱼中,幼虫中存在的单一圆锥状的六边形晶格经历了主要的重构,导致主要的正方形镶嵌在后变态期由四个双重圆锥状光感受器围绕每个单一圆锥状光感受器组成。尽管眼睛迁移中不同视蛋白类型的表达对于理解光感受器可塑性以及细胞命运(就光谱表型而言)是否可以影响正方形镶嵌形成很重要,但它仍未被检查。在这里,我们使用两种抗体 AHblue 和 AB5407 探测正在经历眼睛迁移的大西洋比目鱼的视网膜中的视蛋白表达,这两种抗体分别标记短波长敏感 2(SWS2)视蛋白和较长波长(主要是中波长敏感,RH2)视蛋白。在整个视网膜中,仅用 AB5407 标记双重和三重圆锥状光感受器,而绝大多数单一圆锥状光感受器用 AHblue 标记。AB5407 仅在中心-腹侧视网膜的正方形镶嵌中的一小部分(<5%)单一圆锥状光感受器中标记。在镶嵌过渡区和靠近外周生长区的区域,一些单一圆锥状光感受器至少表达两种视蛋白,因为它们同时用两种抗体标记。短波长(SWS2 表达,或 S)圆锥状光感受器在幼虫单一圆锥状光感受器镶嵌主导的区域内,从中央到背侧视网膜形成非随机的镶嵌梯度。我们的结果表明,至少两种视蛋白在整个后变态期视网膜中表达,并暗示视蛋白转换是产生新的圆锥状光感受器光谱表型的机制。此外,眼睛迁移开始时的 S 圆锥状光感受器梯度可能是一种可塑性的、细胞诱导机制的基础,该机制通过使一个圆锥状光感受器的表型决定其相邻的圆锥状光感受器的表型以及正方形镶嵌的形成。

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