Characterizing choice behavior in Drosophila olfactory classical conditioning

Drosophila melanogaster is a powerful model organism to understand the neural and molecular mechanisms underlying learning and memory. However, memory is usually studied by assessing choice behavior at only one point in time in Drosophila, which limits our understanding of how flies respond to a learned cue. We developed a simple open-field-style assay that records the continuous behavioral dynamics of flies as they form preferences between two competing olfactory stimuli. We trained flies to associate odors with either a reward (sucrose) or punishment (electric shock) and, then placed them in a circular arena where they encountered a choice between a paired or unpaired odor. Within 30 seconds, flies approached the sugar-associated odor or avoided the shock-associated odor. Their collective behavior dynamics suggest the flies became more decisive over time; they traveled more on the preferred side, stayed closer to the source of the preferred cue, made more stops there, and consistently turned away from the alternative cue. We confirmed these results by showing that a learning-deficient mutant strain displayed no choice behavior. This assay provides enhanced resolution for understanding decision-making as a continuous, dynamic process in Drosophila.

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Publication Details

Journal
Journal of Experimental Biology
Published
2026-09-17
DOI
https://doi.org/10.1242/jeb.253164
Primary Topic
Neurobiology and Insect Physiology Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Characterizing choice behavior in Drosophila olfactory classical conditioning

Rebecca Oramas, Karla R. Kaun, John S. Hernandez, Reza Azanchi et al.
Journal of Experimental Biology
Neurobiology and Insect Physiology Research
article

Characterizing choice behavior in Drosophila olfactory classical conditioning

Rebecca Oramas, Karla R. Kaun, John S. Hernandez, Reza Azanchi, Tariq M. Brown, Samuel G. Stea
article en

Abstract

Drosophila melanogaster is a powerful model organism to understand the neural and molecular mechanisms underlying learning and memory. However, memory is usually studied by assessing choice behavior at only one point in time in Drosophila, which limits our understanding of how flies respond to a learned cue. We developed a simple open-field-style assay that records the continuous behavioral dynamics of flies as they form preferences between two competing olfactory stimuli. We trained flies to associate odors with either a reward (sucrose) or punishment (electric shock) and, then placed them in a circular arena where they encountered a choice between a paired or unpaired odor. Within 30 seconds, flies approached the sugar-associated odor or avoided the shock-associated odor. Their collective behavior dynamics suggest the flies became more decisive over time; they traveled more on the preferred side, stayed closer to the source of the preferred cue, made more stops there, and consistently turned away from the alternative cue. We confirmed these results by showing that a learning-deficient mutant strain displayed no choice behavior. This assay provides enhanced resolution for understanding decision-making as a continuous, dynamic process in Drosophila.

Journal of Experimental Biology
Brown University (US)
Brown University, National Institute on Alcohol Abuse and Alcoholism, National Institute on Drug Abuse
Peace, Justice and strong institutions
Openalex Percentile: Top 16%
Neurobiology and Insect Physiology Research
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Characterizing choice behavior in Drosophila olfactory classical conditioning — Rebecca Oramas, Karla R. Kaun, et al. · Journal of Experimental Biology (2026) | TGRS Research Map | TGRS