Signaling and Mechanics influence the number and size of epithelial rosettes in the migrating zebrafish Posterior Lateral Line primordium
Mukherjee, A.; Hilzendeger, M.; Rinvelt, A.; Fatma, S.; Schupp, M.; Dalle Nogare, D.; Chitnis, A.
Show abstract
A prepattern of Fgf signaling triggers formation of epithelial rosettes as protoneuromasts form periodically in the migrating Posterior Lateral Line primordium. However, the number and size of epithelial rosettes is influenced by the balance of mechanical interactions that promote or oppose their formation. Selective slowing of leading cells in the primordium can result in the fusion of two rosettes to form one larger one, while slowing of trailing cells can result in splitting of a previously formed rosette to form two smaller ones. These observations can be accounted for by mechanics-based models, where local interactions associated with apical constriction and cell adhesion promote formation of rosettes, while tension along the length of the primordium, influenced by the relative efficacy of leading and trailing cell migration, opposes their formation. We describe computational models that illustrate how the relative speed of leading versus trailing cells, as well as changes in cell adhesion and mechanical coupling, can influence the pattern of protoneuromast formation and deposition by the migrating primordium. Our studies illustrate how signaling and mechanics together influence morphogenesis in the migrating primordium.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Patterning on the move: the effects of Hh morphogen source movement on signaling dynamics 96%
- Deciphering and modelling the TGF-β signalling interplays specifying the dorsal-ventral axis of the sea urchin embryo. 96%
- Perturbation analysis of a multi-morphogen Turing Reaction-Diffusion stripe patterning system reveals key regulatory interactions 96%
Similar papers in this journal
- Large-scale analysis and computer modeling reveal hidden regularities behind variability of cell division patterns in Arabidopsis thaliana embryogenesis 96%
- Emergence of a smooth interface from growth of a dendritic network against a mechanosensitive contractile material 96%
- Modelling spinal locomotor circuits for movements in developing zebrafish 95%
Similar papers in this journal
- A temporally resolved transcriptome for developing Keller explants of the Xenopus laevis dorsal marginal zone 93%
- BMP signaling pathway member expression is enriched in enteric neural progenitors and required for zebrafish enteric nervous system development 92%
- Endoderm differentiates into a transient epidermis in the mouse perineum 92%
Similar papers in this journal
- Cellular signalling protrusions enable dynamic distant contacts in spinal cord neurogenesis 94%
- Drp1-mediated mitochondrial fission regulates calcium and F-actin dynamics during wound healing 93%
- Dynamic expression and differential requirement of the myocyte fusogen Myomixer during distinct myogenic episodes in the zebrafish 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.