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Ech-Chouini, M.

Publications and source records attributed to Ech-Chouini, M..

2 recordsLinked to original sources

Morphodynamic domains enable integration of live morphometrics and spatial transcriptomics

Tissue development emerges from the coordinated behaviors of thousands of cells, orchestrated by gene regulatory networks. Recent methodological advances now enable high-resolution live imaging of cell- and tissue-scale dynamics and the construction of spatially resolved gene expression atlases. However, quantitatively linking these modalities remains a central challenge, limiting our ability to understand how gene regulatory networks drive cell- and tissue-scale behaviors. Here, using the Drosophila thorax epithelium as a model system, we introduce an analytical and computational framework based on tissue morphodynamic domains: regions defined by coherent cell and tissue dynamics extracted from live imaging morphometrics. Integrating morphodynamic domains with spatial transcriptomics enables the inference of gene regulatory networks associated with distinct spatial cell- and tissue-level behaviors. Statistical cross-scale analyses further allow the interrogation and validation of gene function, confirming or revealing regulators of specific morphogenetic dynamics. In particular, our framework uncovers a role for the Toll-like receptor Tollo in modulating tissue flow, contraction, and apoptosis. Together, our work establishes a framework that integrates spatial transcriptomics with quantitative, multiscale live morphometrics, providing a generalizable strategy to probe and understand developmental processes.

developmental biology↗

Drosophila Toll-2 controls homeotic domain formation and timing of folding

Tissue compartmentalization is a fundamental feature of animal development, crucial for determining cell fate, growth, and organ morphogenesis. Hox genes play essential and conserved roles in specifying homeotic compartments along the antero-posterior axis of the body. Despite extensive characterization of homeotic gene regulation, the mechanisms underlying the formation, maintenance, and reshaping of homeotic compartments during development remain incompletely understood. Here, we investigate the role of the Toll-2 receptor in the formation and folding of the Deformed (Dfd) homeotic compartment, which produces the neck of adult Drosophila. We show that Toll-2 is essential for properly forming the bilateral Dfd compartment through the fusion of the two eye-antennal imaginal discs. Additionally, we find that Toll-2 regulates the timing of neck morphogenesis by promoting cell apoptosis and cell-cell rearrangements preceding neck folding. Last, we establish that Toll-2 independently and sequentially governs both homeotic compartment formation and the timing of its morphogenesis via PI3K and Src signaling, respectively. Altogether, our findings provide novel insights into the spatiotemporal regulation of homeotic compartment development.

developmental biology↗