RRC ID 53544
Author Liou NF, Lin SH, Chen YJ, Tsai KT, Yang CJ, Lin TY, Wu TH, Lin HJ, Chen YT, Gohl DM, Silies M, Chou YH.
Title Diverse populations of local interneurons integrate into the Drosophila adult olfactory circuit.
Journal Nat Commun
Abstract Drosophila olfactory local interneurons (LNs) in the antennal lobe are highly diverse and variable. How and when distinct types of LNs emerge, differentiate, and integrate into the olfactory circuit is unknown. Through systematic developmental analyses, we found that LNs are recruited to the adult olfactory circuit in three groups. Group 1 LNs are residual larval LNs. Group 2 are adult-specific LNs that emerge before cognate sensory and projection neurons establish synaptic specificity, and Group 3 LNs emerge after synaptic specificity is established. Group 1 larval LNs are selectively reintegrated into the adult circuit through pruning and re-extension of processes to distinct regions of the antennal lobe, while others die during metamorphosis. Precise temporal control of this pruning and cell death shapes the global organization of the adult antennal lobe. Our findings provide a road map to understand how LNs develop and contribute to constructing the olfactory circuit.
Volume 9(1)
Pages 2232
Published 2018-6-8
DOI 10.1038/s41467-018-04675-x
PII 10.1038/s41467-018-04675-x
PMID 29884811
PMC PMC5993751
MeSH Animals Animals, Genetically Modified Arthropod Antennae / cytology Arthropod Antennae / growth & development Arthropod Antennae / metabolism Drosophila melanogaster / genetics Drosophila melanogaster / growth & development Drosophila melanogaster / metabolism* Interneurons / classification Interneurons / metabolism* Larva / growth & development Larva / metabolism Microscopy, Confocal Models, Neurological Morphogenesis Nerve Net / cytology Nerve Net / growth & development Nerve Net / metabolism Olfactory Pathways / cytology Olfactory Pathways / growth & development Olfactory Pathways / metabolism* Olfactory Receptor Neurons / classification Olfactory Receptor Neurons / metabolism* Synaptic Transmission Time Factors
IF 12.121
Times Cited 7
Resource
Drosophila