Behrens Christian, Schubert Timm, Haverkamp Silke, Euler Thomas, Berens Philipp
Institute for Ophthalmic Research, University of Tübingen, Tübingen, Germany.
Center for Integrative Neuroscience, University of Tübingen, Tübingen, Germany.
Elife. 2016 Nov 25;5:e20041. doi: 10.7554/eLife.20041.
In the mouse retina, three different types of photoreceptors provide input to 14 bipolar cell (BC) types. Classically, most BC types are thought to contact all cones within their dendritic field; ON-BCs would contact cones exclusively via so-called invaginating synapses, while OFF-BCs would form basal synapses. By mining publically available electron microscopy data, we discovered interesting violations of these rules of outer retinal connectivity: ON-BC type X contacted only ~20% of the cones in its dendritic field and made mostly atypical non-invaginating contacts. Types 5T, 5O and 8 also contacted fewer cones than expected. In addition, we found that rod BCs received input from cones, providing anatomical evidence that rod and cone pathways are interconnected in both directions. This suggests that the organization of the outer plexiform layer is more complex than classically thought.
在小鼠视网膜中,三种不同类型的光感受器为14种双极细胞(BC)类型提供输入。传统上,大多数BC类型被认为在其树突野内与所有视锥细胞接触;ON双极细胞仅通过所谓的内陷突触与视锥细胞接触,而OFF双极细胞则形成基底突触。通过挖掘公开可用的电子显微镜数据,我们发现了这些外视网膜连接规则的有趣违反情况:X型ON双极细胞在其树突野中仅接触约20%的视锥细胞,且大多形成非典型的非内陷接触。5T、5O和8型双极细胞接触的视锥细胞也比预期少。此外,我们发现视杆双极细胞从视锥细胞接收输入,提供了解剖学证据表明视杆和视锥通路在两个方向上相互连接。这表明外网状层的组织比传统认为的更复杂。