Increasing the Number of Synapses Modifies Olfactory Perception inDrosophila
- 15 August 2001
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 21 (16) , 6264-6273
- https://doi.org/10.1523/jneurosci.21-16-06264.2001
Abstract
The Drosophila mutant gigas produces an enlargement of postmitotic cells caused by additional rounds of DNA replication. In neurons, the mutant cell establishes more synapses than normal. We have taken advantage of this feature to study the effect of synapse number on odorant perception. Mosaic adults were generated in which one antenna was homozygous for gigas, whereas the contralateral side served as an internal control. Morphological analysis indicates that the number and type of sensory afferents forming the mutant antenna, as well as their projection to the olfactory glomeruli, are normal. In contrast, the volume of identified glomeruli increases to a variable extent, and mutant sensory neurons branch profusely. The number of synapses, estimated in the ventral (V) glomerulus that receives ipsilateral afferents only, is increased twofold to threefold. Large-dense-core vesicle-containing terminals that probably modulate olfactory centers are identified in the V glomerulus. Their number and size are not modified by the mutant input. Sensory transduction, measured by electroantennograms, is normal in amplitude and kinetics. In odorant tests, however, the profile of the behavioral response to ethyl acetate shows attractive responses to concentrations to which sibling controls remain indifferent (10−8 and 10−7 v/v). In addition, the intensity of the response is augmented both at attractive and repulsive odorant concentrations with respect to that of controls. These results demonstrate that increased synapse number in the sensory neurons can modify the behavior of the organism, allowing a higher sensitivity of perception.Keywords
This publication has 55 references indexed in Scilit:
- Representations of odours and odour mixtures visualized in the honeybee brainNature, 1997
- Spatiotemporal pattern of expression of tenascin‐like molecules in a developing insect olfactory systemJournal of Neurobiology, 1994
- Role of Astroglial Extracellular Matrix in the Formation of Rat Olfactory Bulb GlomeruliExperimental Neurology, 1993
- Inventory and distribution of synapses of identified uniglomerular projection neurons in the antennal lobe of Periplaneta americanaJournal of Comparative Neurology, 1991
- Glial cells form boundaries for developing insect olfactory glomeruliExperimental Neurology, 1990
- A novel serotonin‐immunoreactive neuron in the antennal lobe of the sphinx moth Manduca sexta persists throughout postembryonic lifeJournal of Neurobiology, 1987
- Classical conditioning and retention in normal and mutantDrosophila melanogasterJournal of Comparative Physiology A, 1985
- Fine structural comparison of the antennal nerve in the homeotic mutantAntennapedia with the wild-type antennal and second leg nerves ofDrosophila melanogasterJournal of Morphology, 1979
- Exuberant projection into the corpus callosum from the visual cortex of newborn catsNeuroscience Letters, 1977
- Morphogenetic mutants detected in mitotic recombination clonesNature, 1976