Tissue interactions govern pattern formation in the posterior lateral line of medaka
Centanin, L.; Seleit, A.; Gross, K.; Onistschenko, J.; Hoang, O. P.; Theelke, J.
Show abstract
Vertebrate organs are arranged in a stereotypic, species-specific position along the animal body plan. Substantial morphological variation exists between related species, especially so in the vastly diversified teleost clade. It is still unclear how tissues, organs and systems can accommodate such diverse scaffolds. Here, we use the sequential formation of neuromasts in the posterior lateral line (pLL) system of medaka fish to address tissue-interactions defining a pattern. We show that the pLL pattern is established independently of its neuronal wiring, and demonstrate that the neuromast precursors that constitute the pLL behave as autonomous units during pattern construction. We uncover the necessity of epithelial integrity for correct pLL patterning by disrupting keratin 15 (krt15) and creating epithelial lesions that lead to novel neuromast positioning. By using krt15/wt chimeras, we determined that the new pLL pattern depends exclusively on the mutant epithelium, which instructs wt neuromast to locate ectopically. Inducing epithelial lesions by 2-photon laser ablation during pLL morphogenesis phenocopies krt15 genetic mutants and reveals that epithelial integrity defines the final position of the embryonic pLL neuromasts. Our results show that a fine-balance between primordium intrinsic properties and instructive interactions with the surrounding tissues is necessary to achieve proper organ morphogenesis and patterning. We speculate that this logic likely facilitates the accommodation of sensory modules to changing and diverse body plans.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Coordinated assembly and release of adhesions builds apical junctional belts during de novo polarisation of an epithelial tube 97%
- Bidirectional multiciliated cell extrusion is controlled by Notch driven basal extrusion and Piezo 1 driven apical extrusion. 96%
- The pseudobranch of jawed vertebrates is a mandibular arch-derived gill 96%
Similar papers in this journal
- Fgf signalling is required for gill slit formation in the skate, Leucoraja erinacea 97%
- Basal epidermis collective migration and local Sonic hedgehog signaling promote skeletal branching morphogenesis in zebrafish fins 96%
- Thyroid hormone regulates abrupt skin morphogenesis during zebrafish postembryonic development 96%
Similar papers in this journal
Similar papers in this journal
- Actomyosin contractility in olfactory placode neurons opens the skin epithelium to form the nostril 96%
- Nodal signaling establishes a competency window for stochastic cell fate switching 95%
- Guidance by followers ensures long-range coordination of cell migration through α-Catenin mechanoperception 95%
"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.