Scinovex
article Open AccessTop 1% cited

A GAL4-Driver Line Resource for Drosophila Neurobiology

Cell Reports · 2012 · Vol. 2(4) · pp. 991–1001
Arnim JenettGerald M. RubinTeri-T B NgoDavid ShepherdChristine MurphyHeather DionneBarret D. PfeifferAmanda CavallaroDonald HallJennifer JeterNirmala IyerDona FetterJoanna H HausenfluckHanchuan PengEric T. TrautmanRobert SvirskasEugene W. MyersZ. R. IwińskiYoshinori AsoGina M DePasqualeAdrianne I. EnosPhuson HulammS. LamHsing-Hsi LiTodd LavertyFuhui LongLei QuSean D. MurphyKonrad RokickiTodd SaffordKshiti ShawJ. SimpsonAllison SowellSusana TaeYang YuChristopher T Zugates

Abstract

We established a collection of 7,000 transgenic lines of Drosophila melanogaster. Expression of GAL4 in each line is controlled by a different, defined fragment of genomic DNA that serves as a transcriptional enhancer. We used confocal microscopy of dissected nervous systems to determine the expression patterns driven by each fragment in the adult brain and ventral nerve cord. We present image data on 6,650 lines. Using both manual and machine-assisted annotation, we describe the expression patterns in the most useful lines. We illustrate the utility of these data for identifying novel neuronal cell types, revealing brain asymmetry, and describing the nature and extent of neuronal shape stereotypy. The GAL4 lines allow expression of exogenous genes in distinct, small subsets of the adult nervous system. The set of DNA fragments, each driving a documented expression pattern, will facilitate the generation of additional constructs for manipulating neuronal function.

Neurobiology and Insect Physiology ResearchPlant Molecular Biology ResearchInsect and Arachnid Ecology and BehaviorDrosophila melanogasterBiologyNeuroscienceNervous systemEnhancerComputational biologyFunction (biology)Cell biologyGene expressionGene

MeSH terms

AnimalsBrainDrosophila melanogasterImmunohistochemistryNervous SystemTranscription FactorsTranscription, GeneticDatabases, FactualMicroscopy, ConfocalDrosophila ProteinsAnimals, Genetically Modified
Citations
1,627
FWCI
28.55
field-weighted impact
References
27
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.