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A high-resolution atlas of the brain predicts lineage and birth order underlying neuronal identity.


ABSTRACT: Gene expression shapes the nervous system at every biological level, from molecular and cellular processes defining neuronal identity and function to systems-level wiring and circuit dynamics underlying behavior. Here, we generate the first high-resolution, single-cell transcriptomic atlas of the adult Drosophila melanogaster central brain by integrating multiple datasets, achieving an unprecedented 10-fold coverage of every neuron in this complex tissue. We show that a neuron's genetic identity overwhelmingly reflects its developmental origin, preserving a genetic address based on both lineage and birth order. We reveal foundational rules linking neurogenesis to transcriptional identity and provide a framework for systematically defining neuronal types. This atlas provides a powerful resource for mapping the cellular substrates of behavior by integrating annotations of hemilineage, cell types/subtypes, and molecular signatures of underlying physiological properties. It lays the groundwork for a long-sought bridge between developmental processes and the functional circuits that give rise to behavior.

SUBMITTER: Allen AM 

PROVIDER: S-EPMC7618732 | biostudies-literature | 2025 Dec

REPOSITORIES: biostudies-literature

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A high-resolution atlas of the brain predicts lineage and birth order underlying neuronal identity.

Allen Aaron M AM   Neville Megan C MC   Nojima Tetsuya T   Alejevski Faredin F   Agarwal Devika D   Sims David D   Goodwin Stephen F SF  

Cell genomics 20251219 3


Gene expression shapes the nervous system at every biological level, from molecular and cellular processes defining neuronal identity and function to systems-level wiring and circuit dynamics underlying behavior. Here, we generate the first high-resolution, single-cell transcriptomic atlas of the adult Drosophila melanogaster central brain by integrating multiple datasets, achieving an unprecedented 10-fold coverage of every neuron in this complex tissue. We show that a neuron's genetic identity  ...[more]

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