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[Preprint]. 2025 Sep 27:2025.06.02.657513. Originally published 2025 Jun 3. [Version 2] doi: 10.1101/2025.06.02.657513

Retinal Calcium Waves Coordinate Uniform Tissue Patterning of the Drosophila Eye

Ben Jiwon Choi, Yen-Chung Chen, Claude Desplan
PMCID: PMC12157657  PMID: 40501815

Abstract

Optimal neural processing relies on precise tissue patterning across diverse cell types. Here, we show that spontaneous calcium waves arise among non-neuronal support cells in the developing Drosophila eye to drive retinal morphogenesis. These waves are initiated by Cad96Ca receptor tyrosine kinase signaling, triggering PLCγ-mediated calcium release from the endoplasmic reticulum. A cell-type-specific ‘Innexin code’ coordinates wave propagation through a defined gap junction network among non-neuronal retinal cells, excluding photoreceptors. Wave intensity scales with ommatidial size, triggering stronger Myosin II-driven apical contraction at interommatidial boundaries in larger ommatidia. This size-dependent mechanism compensates for early boundary irregularities, ensuring uniform ommatidial packing critical for precise optical architecture. Our findings reveal how synchronized calcium signaling among non-neuronal cells orchestrates tissue patterning in the developing nervous system.

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