Related Experiment Video
Updated: Nov 17, 2025

Functional Analysis of the Larval Feeding Circuit in Drosophila
Published on: November 19, 2013
Control of feeding by Piezo-mediated gut mechanosensation in Drosophila
Soohong Min1, Yangkyun Oh2, Pushpa Verma3
1Howard Hughes Medical Institute, Harvard Medical School, Department of Cell Biology, Boston, United States.
Abstract:
Across animal species, meals are terminated after ingestion of large food volumes, yet underlying mechanosensory receptors have so far remained elusive. Here, we identify an essential role for Drosophila Piezo in volume-based control of meal size. We discover a rare population of fly neurons that express Piezo, innervate the anterior gut and crop (a food reservoir organ), and respond to tissue distension in a Piezo-dependent manner. Activating Piezo neurons decreases appetite, while Piezo knockout and Piezo neuron silencing cause gut bloating and increase both food consumption and body weight. These studies reveal that disrupting gut distension receptors changes feeding patterns and identify a key role for Drosophila Piezo in internal organ mechanosensation.

