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Updated: Jun 26, 2026

Ex vivo Culturing of Whole, Developing Drosophila Brains
Published on: July 27, 2012
Mushroom bodies enhance initial motor activity in Drosophila
Christine N Serway1, Rebecca R Kaufman, Roland Strauss
1School of Life Sciences, University of Nevada, Las Vegas, Nevada 89154-4004, USA.
Abstract:
The central body (or central complex, CCX) and the mushroom bodies (MBs) are brain structures in most insect phyla that have been shown to influence aspects of locomotion. The CCX regulates motor coordination and enhances activity while MBs have, thus far, been shown to suppress motor activity levels measured over time intervals ranging from hours to weeks. In this report, we investigate MB involvement in motor behavior during the initial stages (15 minutes) of walking in Buridan's paradigm. We measured aspects of walking in flies that had MB lesions induced by mutations in six different genes and by chemical ablation. All tested flies were later examined histologically to assess MB neuroanatomy. Mutant strains with MB structural defects were generally less active in walking than wild-type flies. Most mutants in which MBs were also ablated with hydroxyurea (HU) showed additional activity decrements. Variation in measures of velocity and orientation to landmarks among wild-type and mutant flies was attributed to pleiotropy, rather than to MB lesions. We conclude that MBs upregulate activity during the initial stages of walking, but suppress activity thereafter. An MB influence on decision making has been shown in a wide range of complex behaviors. We suggest that MBs provide appropriate contextual information to motor output systems in the brain, indirectly fine tuning walking by modifying the quantity (i.e., activity) of behavior.
Insights
Mushroom bodies (MBs) initially upregulate walking activity in flies but suppress it later. This research explores MBs
Area of Science:
- Neuroscience
- Insect Behavior
- Locomotion Studies
Background:
- The central complex (CCX) and mushroom bodies (MBs) are key insect brain structures influencing locomotion.
- MBs are known to suppress motor activity over longer durations.
Purpose of the Study:
- To investigate the role of MBs in initial walking behavior (15 minutes) using Buridan's paradigm.
- To determine if MB lesions affect early-stage walking activity and coordination.
Main Methods:
- Inducing MB lesions via mutations in six genes and chemical ablation.
- Measuring walking parameters (velocity, orientation) in mutant and wild-type flies.
- Histological examination to confirm MB neuroanatomy.
Main Results:
- Flies with MB structural defects or ablation generally exhibited reduced walking activity.
- Hydroxyurea (HU) treatment in MB-ablated mutants led to further activity decrements.
- Variations in velocity and orientation were largely attributed to pleiotropy, not MB lesions.
Conclusions:
- MBs initially upregulate, then suppress, walking activity.
- MBs may fine-tune walking by modulating behavioral quantity through contextual information to motor systems.

