Modular presynaptic assemblages scale to postsynaptic partner number
Punal, V. M.; Thornton-Kolbe, E. M.; Dhillon, J.; Rogow, J. A.; Clowney, E. J.
Show abstract
Behavioral diversification can arise through, and is constrained by, evolutionary and inter-individual differences in neural circuit development. Moreover, alteration of focal neural parameters changes the environment in which cells connect into circuits. In the mushroom body, an associative learning center of arthropods, the number of principal Kenyon cells varies widely across species and among individuals. How such variation is developmentally accommodated by projection neurons, which provide sensory input to Kenyon cells, is not understood. In Drosophila melanogaster, we previously demonstrated that projection neurons scale their presynaptic bouton number to Kenyon cell population size. Here, we identify the developmental mechanisms underlying this input flexibility. Boutons arise from projection neuron axonal collaterals; we find that a PNs collateral number is subtype-specific and serves as the substrate through which bouton number scales to Kenyon cell population size. Independent of projection neuron identity or Kenyon cell number, individual collaterals most often produce just one bouton, suggesting collaterals are modular cell biological bouton units. Developing projection neurons initially overproduce nascent collaterals in the early pupa. The set of nascent collaterals that mature and eventually bear boutons is conditional on Kenyon cell number, thereby executing scaling. Finally, early boutons bear filopodia that frequently contact neighboring PN processes, suggesting that bouton-bouton interactions contribute to shaping these structures.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Presynaptic developmental plasticity allows robust sparse wiring of the Drosophila mushroom body 98%
- Origin of wiring specificity in an olfactory map: dendrite targeting of projection neurons 97%
- Regulation of presynaptic Ca2+ channel abundance at active zones through a balance of delivery and turnover 96%
Similar papers in this journal
- Spatial constraints and cell surface molecule depletion structure a randomly connected learning circuit 97%
- Dendro-somatic synaptic inputs to ganglion cells violate receptive field and connectivity rules in the mammalian retina 96%
- Gamma-Protocadherins regulate filopodia self-recognition and dynamics to drivedendrite self-avoidance 96%
Similar papers in this journal
- Visual experience instructs dendrite orientation but is not required for asymmetric wiring of the retinal direction selective circuit. 96%
- The Epithelial Na+ Channel UNC-8 promotes an endocytic mechanism that recycles presynaptic components from old to new boutons in remodeling neurons 96%
- A developmental pathway for epithelial-to-motoneuron transformation in C. elegans 95%
Similar papers in this journal
- Structural and functional synaptic plasticity induced by convergent synapse loss requires co-innervation in the Drosophila neuromuscular circuit 96%
- Circuit organization of the forelimb-related M2-to-M1 corticocortical pathway in the mouse 95%
- Rewarding capacity of optogenetically activating a giant GABAergic central-brain interneuron in larval Drosophila 95%
Similar papers in this journal
- Seven-up acts in neuroblasts to specify adult central complex neuron identity and initiate neuroblast decommissioning 96%
- Dendrites with specialized glial attachments develop by retrograde extension using SAX-7 and GRDN-1 96%
- Agrin/Lrp4 signal constrains MuSK activity during neuromuscular synapse development in appendicular muscle 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.