Hingepoints and neural folds reveal conserved features of primary neurulation in the zebrafish forebrain
Werner, J. M.; Negesse, M. Y.; Brooks, D. L.; Caldwell, A. R.; Johnson, J. M.; Brewster, R.
Show abstract
ABSTRACTPrimary neurulation is the process by which the neural tube, the central nervous system precursor, is formed from the neural plate. Incomplete neural tube closure occurs frequently, yet underlying causes remain poorly understood. Developmental studies in amniotes and amphibians have identified hingepoint and neural fold formation as key morphogenetic events and hallmarks of primary neurulation, the disruption of which causes neural tube defects. In contrast, the mode of neurulation in teleosts such as zebrafish has remained highly debated. Teleosts are thought to have evolved a unique pattern of neurulation, whereby the neural plate infolds in absence of hingepoints and neural folds (NFs), at least in the hindbrain/trunk where it has been studied. We report here on zebrafish forebrain morphogenesis where we identify these morphological landmarks. Our findings reveal a deeper level of conservation of neurulation than previously recognized and establish the zebrafish as a model to understand human neural tube development.Competing Interest StatementThe authors have declared no competing interest.View Full Text
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Collective nuclear behavior shapes bilateral nuclear symmetry for subsequent left-right asymmetric morphogenesis in Drosophila 97%
- A pre-vertebrate endodermal origin of calcitonin-producing neuroendocrine cells 97%
- Control of gastruloid patterning and morphogenesis by the Erk and Akt signaling pathways 96%
Similar papers in this journal
- Fgf4 is critical for maintaining Hes7 levels and Notch oscillations in the somite segmentation clock 98%
- An atypical basement membrane forms a midline barrier during left-right asymmetric gut development in the chicken embryo 97%
- A sheath of motile cells supports collective migration of the Zebrafish posterior lateral line primordium under the skin 97%
Similar papers in this journal
- Alcam-a and Pdgfr-α are essential for the development of sclerotome derived stromal cells that support hematopoiesis in vivo. 97%
- Occurrence of non-apical mitoses at the primitive streak, induced by relaxation of actomyosin and acceleration of the cell cycle, contributes to cell delamination during mouse gastrulation. 97%
- Motor nerves direct the development of the sympathetic nervous system 96%
Similar papers in this journal
"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.