FB2026_02 , released June 18, 2026
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Citation
Schretter, C.E., Hindmarsh Sten, T., Klapoetke, N., Shao, M., Nern, A., Dreher, M., Bushey, D., Robie, A.A., Taylor, A.L., Branson, K., Otopalik, A., Ruta, V., Rubin, G.M. (2025). Social state alters vision using three circuit mechanisms in Drosophila.  Nature 637(8046): 646--653.
FlyBase ID
FBrf0261440
Publication Type
Research paper
Abstract
Animals are often bombarded with visual information and must prioritize specific visual features based on their current needs. The neuronal circuits that detect and relay visual features have been well studied[1-8]. Much less is known about how an animal adjusts its visual attention as its goals or environmental conditions change. During social behaviours, flies need to focus on nearby flies[9-11]. Here we study how the flow of visual information is altered when female Drosophila enter an aggressive state. From the connectome, we identify three state-dependent circuit motifs poised to modify the response of an aggressive female to fly-sized visual objects: convergence of excitatory inputs from neurons conveying select visual features and internal state; dendritic disinhibition of select visual feature detectors; and a switch that toggles between two visual feature detectors. Using cell-type-specific genetic tools, together with behavioural and neurophysiological analyses, we show that each of these circuit motifs is used during female aggression. We reveal that features of this same switch operate in male Drosophila during courtship pursuit, suggesting that disparate social behaviours may share circuit mechanisms. Our study provides a compelling example of using the connectome to infer circuit mechanisms that underlie dynamic processing of sensory signals.
PubMed ID
PubMed Central ID
PMC11735400 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Nature
    Title
    Nature
    Publication Year
    1869-
    ISBN/ISSN
    0028-0836
    Data From Reference
    Alleles (33)
    Genes (9)
    Sequence Features (1)
    Natural transposons (1)
    Experimental Tools (1)
    Transgenic Constructs (34)