FB2026_02 , released June 18, 2026
Reference Report
Some tools are temporarily unavailable. We are completing maintenance and working to restore these tools as soon as possible. Thank you for your patience.
Open Close
Reference
Citation
Wong, K.K.L., Li, T., Fu, T.M., Liu, G., Lyu, C., Kohani, S., Xie, Q., Luginbuhl, D.J., Upadhyayula, S., Betzig, E., Luo, L. (2023). Origin of wiring specificity in an olfactory map revealed by neuron type-specific, time-lapse imaging of dendrite targeting.  eLife 12(): e85521.
FlyBase ID
FBrf0256539
Publication Type
Research paper
Abstract
How does wiring specificity of neural maps emerge during development? Formation of the adult Drosophila olfactory glomerular map begins with the patterning of projection neuron (PN) dendrites at the early pupal stage. To better understand the origin of wiring specificity of this map, we created genetic tools to systematically characterize dendrite patterning across development at PN type-specific resolution. We find that PNs use lineage and birth order combinatorially to build the initial dendritic map. Specifically, birth order directs dendrite targeting in rotating and binary manners for PNs of the anterodorsal and lateral lineages, respectively. Two-photon- and adaptive optical lattice light-sheet microscope-based time-lapse imaging reveals that PN dendrites initiate active targeting with direction-dependent branch stabilization on the timescale of seconds. Moreover, PNs that are used in both the larval and adult olfactory circuits prune their larval-specific dendrites and re-extend new dendrites simultaneously to facilitate timely olfactory map organization. Our work highlights the power and necessity of type-specific neuronal access and time-lapse imaging in identifying wiring mechanisms that underlie complex patterns of functional neural maps.
PubMed ID
PubMed Central ID
PMC10195080 (PMC) (EuropePMC)
Associated Information
Comments
Associated Files
Other Information
Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    eLife
    Title
    eLife
    ISBN/ISSN
    2050-084X
    Data From Reference
    Alleles (38)
    Genes (14)
    Natural transposons (2)
    Insertions (15)
    Experimental Tools (11)
    Transgenic Constructs (26)