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Updated: Jul 22, 2025

Patch Clamp Recordings from Embryonic Zebrafish Mauthner Cells
Published on: September 10, 2013
Epigenetically distinct synaptic architecture in clonal compartments in the teleostean dorsal pallium
Yasuko Isoe1,2,3, Ryohei Nakamura2, Shigenori Nonaka4,5,6
1Department of Molecular and Cellular Biology, Faculty of Arts and Sciences, Harvard University, Cambridge, United States.
Abstract:
The dorsal telencephalon (i.e. the pallium) exhibits high anatomical diversity across vertebrate classes. The non-mammalian dorsal pallium accommodates various compartmentalized structures among species. The developmental, functional, and evolutional diversity of the dorsal pallium remain unillustrated. Here, we analyzed the structure and epigenetic landscapes of cell lineages in the telencephalon of medaka fish (Oryzias latipes) that possesses a clearly delineated dorsal pallium (Dd2). We found that pallial anatomical regions, including Dd2, are formed by mutually exclusive clonal units, and that each pallium compartment exhibits a distinct epigenetic landscape. In particular, Dd2 possesses a unique open chromatin pattern that preferentially targets synaptic genes. Indeed, Dd2 shows a high density of synapses. Finally, we identified several transcription factors as candidate regulators. Taken together, we suggest that cell lineages are the basic components for the functional regionalization in the pallial anatomical compartments and that their changes have been the driving force for evolutionary diversity.

