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Transcriptomic Analysis Corroborates the New Radial Model of the Mouse Pallial Amygdala

GSE296856 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2025/09/01 Platform GPL34290
Summary
The mammalian amygdala is located in the temporal lobe of the telencephalon and plays a key role in limbic processing. Recently, our group proposed a radial morphological model to understand the glutamatergic (pallial) part of this nuclear complex in terms of separate progenitor domains. This model explains the amygdala region as consisting of several adjacent developmental radial progenitor units, disposing their distinct periventricular, intermediate, and superficial strata from the ventricle to the pial surface. It was expected that cell populations belonging to specific progenitor domains would present greater molecular similarity to each other than to neighboring developmental units. In this work, we aim to corroborate the existence of several radial domains in the pallial amygdala at the transcriptomic level. snRNAseq experiments in the amygdala of adult mice of both sexes indicated that at low resolution, the whole pallial amygdala was found to divide into two super-radial domains distinguished by differential expression of Slc17a6 and Slc17a7; the former partly imitates molecularly the subpallial (output) amygdalar regions, whereas the rest of the pallial amygdala is molecularly more akin to the surrounding cortical areas. In addition, our snRNAseq transcriptomic analysis fully supports the postulated amygdalar radial model of four main radial domains.
Published in
Transcriptomic Analysis Corroborates the New Radial Model of the Mouse Pallial Amygdala
Fernández G, López-González L, Pons-Fuster E et al. · Biomolecules 2025 · PMID 40867603 · doi:10.3390/biom15081160
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Also filed as BioProject PRJNA1261824 and SRA study SRP584603. Searching any of these in the dataset finder brings you back here.

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