Drosophila Larval Cns

The Drosophila larval central nervous system (CNS) is the developing brain and ventral nerve cord of fruit-fly larvae, a compact model for studying how neural circuits control behavior. Its neurons and glial cells receive sensory information, integrate signals through synaptic connections, and generate motor commands that coordinate feeding, movement, and responses to the environment. Because the larval CNS is small, genetically accessible, and amenable to live imaging and targeted manipulation, researchers can trace circuit development and test neuronal function with cellular precision. Studies of this system clarify principles of synaptic connectivity, circuit organization, and nervous-system development that inform broader neuroscience.

Drosophila Larval Cns - Related Videos

Research

JoVE Journal - Biology

Dissection of Larval CNS in Drosophila Melanogaster

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Cited by 18 •

2006

In this article we demonstrate how to dissect the central nervous system from third instar Drosophila larvae.

Research

JoVE Journal - Neuroscience
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Mapping and Application of Enhancer-trap Flippase Expression in Larval and Adult Drosophila CNS

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Cited by 7 •

2011

We describe a Flippase-induced intersectional Gal80/Gal4 repression (FINGR) method, allowing tissue-specific FLP to determine Gal80 expression patterns. Wherever Gal4 and FLP overlap, Gal4 expression is turned on (Gal80 flipped out) or off (Gal80 flipped in). The FINGR method is versatile for clonal analysis and neural circuit mapping.

Education

JoVE Science Education - Basic Biology

Drosophila Larval IHC

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2023

Immunohistochemistry (IHC) is a technique used to visualize the presence and location of proteins within tissues. Drosophila larvae are particularly amenable to IHC because of the ease with which they can be processed for staining. Additionally, the larvae are transparent, meaning that some tissues can be visualized without the need for dissection. In IHC, proteins are ultimately detected with antibodies that specifically bind to “epitopes” within the protein of interest. In order to preserve...

Live Imaging of Drosophila Larval Neuroblasts

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Cited by 37 •

2014

This protocol details a streamlined method used to conduct live cell imaging in the context of an intact larval brain. Live cell imaging approaches are invaluable for the study of asymmetric neural stem cell divisions as well as other neurogenic and developmental processes, consistently uncovering mechanisms that were previously overlooked.

Visualization of Larval Segmental Nerves in 3rd Instar Drosophila Larval Preparations

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Cited by 13 •

2010

Drosophila melanogaster larvae provide an ideal model system to investigate the mechanisms of axonal transport within larval segmental nerves. Using this procedure, 3rd instar larvae carrying various mutations can be compared to wild type larvae.

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