Molecular Characterization of the Sea Lamprey Retina Illuminates the Evolutionary Origin of Retinal Cell Types
Wang, J.; Zhang, L.; Cavallini, M.; Pahlevan, A.; Sun, J.; Morshedian, A.; Fain, G. L.; Sampath, A. P.; Peng, Y.-R.
Show abstract
The lamprey, a primitive jawless vertebrate whose ancestors diverged from all other vertebrates over 500 million years ago, offers a unique window into the primordial formation of the retina. Using single-cell RNA-sequencing, we characterized retinal cell types in lamprey and compared their molecular differentiation and regulatory networks with those in mouse and other jawed vertebrates. Our analysis revealed six cell classes and 74 distinct cell types. We discovered multiple conserved cell types shared between jawless and jawed lineages, including notably rods and cones, ON and OFF bipolar cells, and starburst amacrine cells. The conservation of these cell types indicates their emergence early in vertebrate evolution, highlighting the primal designs of retinal circuits for the rod pathway, ON-OFF discrimination, and direction selectivity. In contrast to this evidence for conservation, the pathways of diversification for amacrine cells and retinal ganglion cells appear to have distinctly diverged between the two lineages. Furthermore, we inferred master regulators in specifying retinal cell classes in both lamprey and macaque and identified common regulatory elements across species, underscoring the ancestral nature of the molecular origins governing retinal cell classes. Altogether, our characterization of the lamprey retina illuminates the evolutionary origin of visual processing in the retina.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Retinal input influences pace of neurogenesis but not cell-type configuration of the visual forebrain 96%
- Cellular and transcriptional trajectories of neural fate specification in sea anemone uncover two modes of adult neurogenesis 96%
- Birds multiplex spectral and temporal visual information via retinal On- and Off-channels 96%
Similar papers in this journal
- Tbr2-Dependent Parallel Pathways Regulate the Development of Distinct ipRGC Subtypes 96%
- Spatially resolved cell atlas of the teleost telencephalon and deep homology of the vertebrate forebrain 96%
- Direct retino-iridal projections and intrinsic iris contraction mediate the pupillary light reflex in early vertebrates 96%
Similar papers in this journal
- Heterochronic transcription factor expression drives cone-dominant retina development in 13-lined ground squirrels. 96%
- Molecular, Cellular, and Developmental Organization of the Mouse Vomeronasal Organ at Single Cell Resolution 96%
- Self-formation of concentric zones of telencephalic and ocular tissues and directional retinal ganglion cell axons 96%
Similar papers in this journal
- Integrated single-cell transcriptomic and epigenetic analyses of cell-state transition and lineage commitment in the embryonic mouse cerebellum 95%
- A telencephalon cell type atlas for goldfish reveals diversity in the evolution of spatial structure and cell types 95%
- Social reprogramming in ants induces longevity-associated glia remodeling 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.