From tension to buckling - a mechanical transition underlies the puzzle-shape morphogenesis of histoblasts in the Drosophila epidermis - Ecole Centrale de Marseille Accéder directement au contenu
Pré-Publication, Document De Travail Année : 2022

From tension to buckling - a mechanical transition underlies the puzzle-shape morphogenesis of histoblasts in the Drosophila epidermis

Résumé

The polygonal shape of cells in proliferating epithelia is a result of the tensile forces of the cytoskeletal cortex and packing geometry set by the cell cycle 1,2 . In the larval Drosophila epidermis, two cell populations, histoblasts and larval epithelial cells, compete for space as they grow on a limited body surface. They do so in the absence of cell divisions. We report a striking morphological transition of histoblasts during larval development, where they change from a tensed network configuration with straight cell outlines at the level of adherens junctions to a highly folded morphology. The apical surface of histoblasts shrinks while their growing adherens junctions fold, forming deep lobules. Volume increase of growing histoblasts is accommodated basally, compensating for the shrinking apical area. The folded geometry of apical junctions resembles elastic buckling, and we show that the imbalance between the shrinkage of the apical domain of histoblasts and the continuous growth of junctions triggers buckling. Our model is supported by laser dissections and optical tweezer experiments together with computer simulations. Our analysis pinpoints the ability of histoblasts to store mechanical energy to a much greater extent than most other epithelial cell types investigated so far, while retaining the ability to dissipate stress on the hours time scale. Finally, we propose a possible mechanism for size regulation of histoblast apical size through the lateral pressure of the epidermis, driven by the growth of cells on a limited surface. Buckling effectively compacts histoblasts at their apical plane and may serve to avoid physical harm to these adult epidermis precursors during larval life. Our work indicates that in growing non-dividing cells, compressive forces, instead of tension, may drive cell morphology.
Fichier principal
Vignette du fichier
2024 04 Rigato histoblasts.pdf (24.67 Mo) Télécharger le fichier
Origine : Fichiers produits par l'(les) auteur(s)

Dates et versions

hal-04550575 , version 1 (17-04-2024)

Licence

Paternité - Pas de modifications

Identifiants

Citer

Annafrancesca Rigato, Huicheng Meng, Claire Chardes, Adam Runions, Faris Abouakil, et al.. From tension to buckling - a mechanical transition underlies the puzzle-shape morphogenesis of histoblasts in the Drosophila epidermis. 2024. ⟨hal-04550575⟩
0 Consultations
0 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More