The sensory shark: high-quality morphological, genomic and transcriptomic data for the small-spotted catsharkScyliorhinus caniculareveal the molecular bases of sensory organ evolution in jawed vertebrates
Author:
Mayeur H., Leyhr J., Mulley J.ORCID, Leurs N., Michel L., Sharma K., Lagadec R., Aury J.-M.ORCID, Osborne O.G., Mulhair P., Poulain J., Mangenot S., Mead D., Smith M., Corton C., Oliver K., Skelton J., Betteridge E., Dolucan J., Dudchenko O., Omer A.D., Weisz D., Aiden E.L., McCarthy S., Sims Y., Torrance J., Tracey A., Howe K., Baril TORCID, Hayward A.ORCID, Martinand-Mari C., Sanchez S., Haitina T.ORCID, Martin K., Korsching S.I., Mazan S., Debiais-Thibaud M.ORCID
Abstract
AbstractCartilaginous fishes (chimaeras and elasmobranchs -sharks, skates and rays) hold a key phylogenetic position to explore the origin and diversifications of jawed vertebrates. Here, we report and integrate reference genomic, transcriptomic and morphological data in the small-spotted catsharkScyliorhinus caniculato shed light on the evolution of sensory organs. We first characterise general aspects of the catshark genome, confirming the high conservation of genome organisation across cartilaginous fishes, and investigate population genomic signatures. Taking advantage of a dense sampling of transcriptomic data, we also identify gene signatures for all major organs, including chondrichthyan specializations, and evaluate expression diversifications between paralogs within major gene families involved in sensory functions. Finally, we combine these data with 3D synchrotron imaging andin situgene expression analyses to explore chondrichthyan-specific traits and more general evolutionary trends of sensory systems. This approach brings to light, among others, novel markers of the ampullae of Lorenzini electro-sensory cells, a duplication hotspot for crystallin genes conserved in jawed vertebrates, and a new metazoan clade of the Transient-receptor potential (TRP) family. These resources and results, obtained in an experimentally tractable chondrichthyan model, open new avenues to integrate multiomics analyses for the study of elasmobranchs and jawed vertebrates.
Publisher
Cold Spring Harbor Laboratory
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