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Keimpe D. Wierda

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Open access Aug 2026

Developing mouse inhibitory neuron single-cell transcriptomes reveal distinct modes of cell-type diversification

The cerebral cortex depends on a diverse repertoire of inhibitory neurons, yet how this diversity emerges during development remains unclear. Rare inhibitory subtypes are often underrepresented in single-cell RNA-sequencing datasets, limiting resolution of their developmental trajectories. Here we developed a computational pipeline to enrich and integrate rare cell types across datasets and applied it to somatostatin-expressing (SST+) inhibitory neurons, the most diverse inhibitory class in cortex. We generated Dev-SST-v1 and Dev-SST-v2, transcriptomic reference maps comprising more than 55,000 mouse SST+ neurons. These maps identify three major SST+ inhibitory neuron groups—Martinotti cells (MCs), non-Martinotti cells (nMCs) and long-range projecting (LRP) neurons—each defined by a distinct developmental strategy. MCs commit early, whereas nMCs diversify progressively. LRPs follow a contracting trajectory, with one transient subtype eliminated by programmed cell death. Together, these findings establish three distinct modes of SST+ inhibitory neuron diversification, including a previously unrecognized contracting mode. Researchers discover a transient inhibitory cell type, and reveal that the developing cortex builds inhibitory diversity through three routes—early commitment, gradual diversification and selective elimination.

Minhui Liu, Facundo Ferrero Restelli, Elia Micoli et al. · 0 citations

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