What it is
The authors combined whole-brain developmental projection maps with single-cell transcriptomics to work out how serotonin neurons wire the forebrain after birth. Using a deep-learning pipeline, they generated four-dimensional whole-brain maps of postnatal serotonin axon density and found two coupled modes of regulation: region-specific trajectories of axon growth and refinement, and an early-postnatal, brain-wide synchronization of innervation. Serotonin neuron heterogeneity was established embryonically, and the subtype taxonomy was largely conserved between mice and humans.
Why it matters
The serotonin system modulates nearly all neural circuits and is a major pharmacological target for mood and anxiety disorders, but how its projection-defined subsystems assemble during development had been unclear. The study shows brain-wide serotonin innervation built through embryonic subtype specification plus two layers of postnatal control: system-level synchronization and subtype-specific terminal development. Across subtypes, a coordinated surge in wiring-molecule expression at mouse postnatal day 4 aligned with the subsequent global wave of innervation.
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Filed underNeural dynamics and brain function, Single-cell and spatial transcriptomics, Neurogenesis and neuroplasticity mechanisms