凤尾鱼视网膜水平细胞连通性的三维电子显微镜研究。

IF 4.4 1区 生物学 Q1 BIOLOGY
Petra Guder, Max Scheungrab, Peter Kohnert, Georgios Kolyfetis, Gerhard Wanner, Martin Heß
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引用次数: 0

摘要

背景:块面扫描电子显微镜开启了连接组学研究的新时代,在该时代中,可以对神经元网络(如视网膜)中的所有细胞进行密集重建,从而解析突触接触。凤尾鱼是数量特别丰富的海洋硬骨鱼,它们的视网膜上有以三锥为基础的彩色视觉区域,还有一个区域有专门的视锥光感受器,即所谓的多视锥,由长锥和短锥组成,具有轴向的外层片层,用于偏振对比视觉。这种模式是在20世纪70年代发现的,在脊椎动物中是独一无二的,但是在更深的视网膜层中产生对比度的神经线路到目前为止是未知的。结果:为了阐明欧洲凤尾鱼Engraulis encrasicolus (Linnaeus, 1758)的视网膜连接组学,在第一个项目中,我们使用体积电子显微镜和随后的计算机辅助重建研究了3种水平细胞类型的形状和锥体特异性连接规则:H1细胞接触多锥体的两种锥体类型,H2细胞只接触短锥体,H3细胞只连接杆状细胞。此外,一个独特的双束 ller纤维和一层H1轴突终端在结构上被澄清。结论:研究结果表明:(1)基于外部视网膜精细结构特化的单色偏振对比系统与内部视网膜的遗传(双色)颜色对比机制有关;(2)凤尾鱼多视锥由红色(变长)和绿色(变短)视锥形成;(3)蓝色单视锥在视网膜相关区域消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Horizontal cell connectivity in the anchovy retina-a 3D electron microscopic study.

Background: Block-face scanning electron microscopy has opened a new era of connectomics research, in which it is possible to make dense reconstructions of all cells in a clipping of a neuronal network, such as the retina, resolving synaptic contacts. Anchovies, exceptionally abundant marine teleosts, have retinae with regions for triple cone-based color vision and a region with specialized cone photoreceptors, so-called polycones, made of long and short cones with axially oriented outer segment lamellae for polarization contrast vision. This modality, discovered in the 1970s, is unique in vertebrates, but the neural wiring for contrast generation in deeper retinal layers is unknown so far.

Results: To elucidate the retinal connectomics of the European anchovy Engraulis encrasicolus (Linnaeus, 1758), in a first project, we investigated the shapes and cone-specific wiring rules of 3 horizontal cell types using volume electron microscopy and subsequent computer-aided reconstruction: H1 cells contact both cone types of the polycone, H2 cells contact only the short cones, and H3 cells are exclusively connected to rods. In addition, a distinctive double band of Müller fibers and a layer of H1 axon terminals were structurally clarified.

Conclusions: The findings suggest that (1) the monochromatic polarization contrast system based on fine structure specializations in the outer retina is connected to an inherited (bichromatic) color contrast mechanism in the inner retina, (2) the anchovy polycones arose from red (now long) and green (now short) cones, and (3) the blue single cones disappeared in the relevant retinal region.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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