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Optical dissection of experience-dependent pre- and postsynaptic plasticity in the Drosophila brain

Authors :
Natalia H. Revelo
André Fiala
Katharina J. Seitz
Ulrike Pech
Silvio O. Rizzoli
Source :
Cell Reports, 10, 12, pp. 2083-95, Cell Reports, Vol 10, Iss 12, Pp 2083-2095 (2015), Cell Reports, 10, 2083-95
Publication Year :
2015

Abstract

Contains fulltext : 156933.pdf (Publisher’s version ) (Open Access) Drosophila represents a key model organism for dissecting neuronal circuits that underlie innate and adaptive behavior. However, this task is limited by a lack of tools to monitor physiological parameters of spatially distributed, central synapses in identified neurons. We generated transgenic fly strains that express functional fluorescent reporters targeted to either pre- or postsynaptic compartments. Presynaptic Ca(2+) dynamics are monitored using synaptophysin-coupled GCaMP3, synaptic transmission is monitored using red fluorescent synaptophysin-pHTomato, and postsynaptic Ca(2+) dynamics are visualized using GCaMP3 fused with the postsynaptic matrix protein, dHomer. Using two-photon in vivo imaging of olfactory projection neurons, odor-evoked activity across populations of synapses is visualized in the antennal lobe and the mushroom body calyx. Prolonged odor exposure causes odor-specific and differential experience-dependent changes in pre- and postsynaptic activity at both levels of olfactory processing. The approach advances the physiological analysis of synaptic connections across defined groups of neurons in intact Drosophila.

Details

ISSN :
22111247
Database :
OpenAIRE
Journal :
Cell Reports, 10, 12, pp. 2083-95, Cell Reports, Vol 10, Iss 12, Pp 2083-2095 (2015), Cell Reports, 10, 2083-95
Accession number :
edsair.doi.dedup.....1751daff0498834becc6a75c5ab7ed89