Ancient origin of the rod bipolar cell pathway in the vertebrate retina

生物 脊椎动物 视网膜 细胞生物学 细胞 神经科学 进化生物学 基因 遗传学
作者
Ayana Hellevik,Philip Mardoum,Joshua Hahn,Yvonne Kölsch,Florence D. D’Orazi,Sachihiro C. Suzuki,Leanne Godinho,Owen Lawrence,Fred Rieke,Karthik Shekhar,Joshua R. Sanes,Herwig Baier,Tom Baden,Rachel Wong,Takeshi Yoshimatsu
标识
DOI:10.1101/2023.09.12.557433
摘要

Vertebrates rely on rod photoreceptors for vision in low-light conditions1. Mammals have a specialized downstream circuit for rod signaling called the primary rod pathway, which comprises specific cell types and wiring patterns that are thought to be unique to this lineage2-6. Thus, it has been long assumed that the primary rod pathway evolved in mammals3,5-7. Here, we challenge this view by demonstrating that the mammalian primary rod pathway is conserved in zebrafish, which diverged from extant mammals ~400 million years ago. Using single-cell RNA-sequencing, we identified two bipolar cell (BC) types in zebrafish that are related to mammalian rod BCs (RBCs) of the primary rod pathway. By combining electrophysiology, histology, and ultrastructural reconstruction of the zebrafish RBCs, we found that, like mammalian RBCs8, both zebrafish RBC types connect with all rods and red-cones in their dendritic territory, and provide output largely onto amacrine cells. The wiring pattern of the amacrine cells post-synaptic to one RBC type is strikingly similar to that of mammalian RBCs. This suggests that the cell types and circuit design of the primary rod pathway may have emerged before the divergence of teleost fish and amniotes (mammals, bird, reptiles). The second RBC type in zebrafish, which forms separate pathways from the first RBC type, is either lost in mammals or emerged in fish to serve yet unknown roles.
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