FB2026_02 , released June 18, 2026
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Citation
Lin, H.H., Chu, L.A., Fu, T.F., Dickson, B.J., Chiang, A.S. (2013). Parallel neural pathways mediate CO2 avoidance responses in Drosophila.  Science 340(6138): 1338--1341.
FlyBase ID
FBrf0221835
Publication Type
Research paper
Abstract
Different stimulus intensities elicit distinct perceptions, implying that input signals are either conveyed through an overlapping but distinct subpopulation of sensory neurons or channeled into divergent brain circuits according to intensity. In Drosophila, carbon dioxide (CO2) is detected by a single type of olfactory sensory neuron, but information is conveyed to higher brain centers through second-order projection neurons (PNs). Two distinct pathways, PN(v)-1 and PN(v)-2, are necessary and sufficient for avoidance responses to low and high CO2 concentrations, respectively. Whereas low concentrations activate PN(v)-1, high concentrations activate both PN(v)s and GABAergic PN(v)-3, which may inhibit PN(v)-1 pathway-mediated avoidance behavior. Channeling a sensory input into distinct neural pathways allows the perception of an odor to be further modulated by both stimulus intensity and context.
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Neuroscience. Circuit logic of avoidance and attraction.
Su and Carlson, 2013, Science 340(6138): 1295--1297 [FBrf0221968]

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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Science
    Title
    Science
    Publication Year
    1895-
    ISBN/ISSN
    0036-8075 1095-9203
    Data From Reference