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Updated: May 4, 2026

Visualization of Proprioceptors in Drosophila Larvae and Pupae
Published on: June 13, 2012
Self-organized Notch dynamics generate stereotyped sensory organ patterns in Drosophila
Francis Corson1, Lydie Couturier2,3, Hervé Rouault2,3
1Laboratoire de Physique Statistique, Ecole Normale Supérieure, CNRS, Université Pierre et Marie Curie, Université Paris Diderot, 75005 Paris, France. corson@lps.ens.fr fschweis@pasteur.fr.
Abstract:
The emergence of spatial patterns in developing multicellular organisms relies on positional cues and cell-cell communication. Drosophila sensory organs have informed a paradigm in which these operate in two distinct steps: Prepattern factors drive localized proneural activity, then Notch-mediated lateral inhibition singles out neural precursors. Here we show that self-organization through Notch signaling also establishes the proneural stripes that resolve into rows of sensory bristles on the fly thorax. Patterning, initiated by a gradient of Delta ligand expression, progresses through inhibitory signaling between and within stripes. Thus, Notch signaling can support self-organized tissue patterning as a prepattern is transduced by cell-cell interactions into a refined arrangement of cellular fates.

