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Neuroblast ablation in Drosophila P[GAL4] lines reveals origins of olfactory interneurons

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TLDR
Early larval HU application to P[GAL4] strains that label specific neuron types enabled us to identify the origins of the two major classes of interneurons in the olfactory system and suggested that differentiated RI are present at the larval stage already and may be retained through metamorphosis.
Abstract
Hydroxyurea (HU) treatment of early first instar larvae in Drosophila was previously shown to ablate a single dividing lateral neuroblast (LNb) in the brain. Early larval HU application to P[GAL4] strains that label specific neuron types enabled us to identify the origins of the two major classes of interneurons in the olfactory system. HU treatment resulted in the loss of antennal lobe local interneurons and of a subset of relay interneurons (RI), elements usually projecting to the calyx and the lateral protocerebrum (LPR). Other RI were resistant to HU and still projected to the LPR. However, they formed no collaterals in the calyx region (which was also ablated), suggesting that their survival does not depend on targets in the calyx. Hence, the ablated interneurons were derived from the LNb, whereas the HU-resistant elements originated from neuroblasts which begin to divide later in larval life. Developmental GAL4 expression patterns suggested that differentiated RI are present at the larval stage already and may be retained through metamorphosis.

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Citations
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Genetic mosaic with dual binary transcriptional systems in Drosophila.

TL;DR: Lineage analysis with dual-expression-control MARCM suggested the presence of neuroglioblasts in the developing optic lobes but did not indicate the production of glia by postembryonic mushroom body neuronal precursors.
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A single population of olfactory sensory neurons mediates an innate avoidance behaviour in Drosophila

TL;DR: It is demonstrated that Drosophila exhibit robust avoidance to odours released by stressed flies, and that the activation of a single population of sensory neurons innervating one glomerulus is responsible for an innate avoidance behaviour in Drosophile.
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A Conserved Dedicated Olfactory Circuit for Detecting Harmful Microbes in Drosophila

TL;DR: This work identifies a functionally segregated olfactory circuit in flies that is activated exclusively by geosmin, which constitutes an ecologically relevant stimulus that alerts flies to the presence of harmful microbes.
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Lateral presynaptic inhibition mediates gain control in an olfactory circuit

TL;DR: A substantial portion of this interglomerular inhibition acts at a presynaptic locus, and the results imply that this is mediated by both ionotropic and metabotropic receptors on the same nerve terminal.
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Role of GABAergic Inhibition in Shaping Odor-Evoked Spatiotemporal Patterns in the Drosophila Antennal Lobe

TL;DR: It is shown that many axonless local neurons (LNs) in the adult antennal lobe are GABAergic, suggesting a cellular basis for odor- and glomerulus-dependent patterns of inhibition and consistent with a model in which odors elicit stimulus-specific spatial patterns of GABA release.
References
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Journal ArticleDOI

Targeted gene expression as a means of altering cell fates and generating dominant phenotypes.

TL;DR: The GAL4 system, a system for targeted gene expression that allows the selective activation of any cloned gene in a wide variety of tissue- and cell-specific patterns, has been designed and used to expand the domain of embryonic expression of the homeobox protein even-skipped.
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The Organization of the Chemosensory System in Drosophila Melanogaster: A Review

TL;DR: This review surveys the organization of the olfactory and gustatory systems in the imago and in the larva of Drosophila melanogaster, both at the sensory and the central level.
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Detection in situ of genomic regulatory elements in Drosophila.

TL;DR: The P-lacZ fusion gene is an efficient tool for the recovery of elements that may regulate gene expression in Drosophila and for the generation of a wide variety of cell-type-specific markers.
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Associative odor learning in Drosophila abolished by chemical ablation of mushroom bodies

TL;DR: The results demonstrate that MBs mediate associative odor learning in flies, and that adult flies developing without MBs are unable to perform in a classical conditioning paradigm that tests associative learning of odor cues and electric shock.
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Drosophila Mushroom Body Mutants are Deficient in Olfactory Learning

TL;DR: Two Drosophila mutants are described in which the connections between the input to and the output from the mushroom bodies is largely interrupted, and the defect seems not to impair learning of color discrimination tasks or operant learning involving visual cues.
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