Early differentiation and migration of cranial neural crest in the opossum, Monodelphis domestica
- 5 March 2003
- journal article
- research article
- Published by Wiley in Evolution & Development
- Vol. 5 (2) , 121-135
- https://doi.org/10.1046/j.1525-142x.2003.03019.x
Abstract
SUMMARY Marsupial mammals are born at a highly altricial state. Nonetheless, the neonate must be capable of considerable functional independence. Comparative studies have shown that in marsupials the morphogenesis of many structures critical to independent function are advanced relative to overall development. Many skeletal and muscular elements in the facial region show particular heterochrony. Because neural crest cells are crucial to forming and patterning much of the face, this study investigates whether the timing of cranial neural crest differentiation is also advanced. Histology and scanning electron microscopy of Monodelphis domestica embryos show that many aspects of cranial neural crest differentiation and migration are conserved in marsupials. For example, as in other vertebrates, cranial neural crest differentiates at the neural ectoderm/epidermal boundary and migrates as three major streams. However, when compared with other vertebrates, a number of timing differences exist. The onset of cranial neural crest migration is early relative to both neural tube development and somite formation in Monodelphis. First arch neural crest cell migration is particularly advanced and begins before any somites appear or regional differentiation exists in the neural tube. Our study provides the first published description of cranial neural crest differentiation and migration in marsupials and offers insight into how shifts in early developmental processes can lead to morphological change.Keywords
This publication has 45 references indexed in Scilit:
- Defects in pathfinding by cranial neural crest cells in mice lacking the neuregulin receptor ErbB4Nature Cell Biology, 2000
- Regulation and function of FGF8 in patterning of midbrain and anterior hindbrainBiochemistry and Cell Biology, 2000
- Integration of Craniofacial Structures During Development in MammalsAmerican Zoologist, 1996
- Development of craniofacial musculature inMonodelphis domestica(marsupialia, didelphidae)Journal of Morphology, 1994
- Cranial osteogenesis in Monodelphis domestica (Didelphidae) and Macropus eugenii (Macropodidae)Journal of Morphology, 1993
- Ultrastructure of neural crest formation in the midbrain/rostral hindbrain and preotic hindbrain regions of the mouse embryoJournal of Anatomy, 1987
- Formation and distribution of neural crest mesenchyme to the first pharyngeal arch region of the mouse embryoJournal of Anatomy, 1986
- The effects of diet on growth and reproduction in gray short‐tailed opossums (Monodelphis domestica)Journal of Experimental Zoology, 1985
- Craniofacial development: New views on old problemsThe Anatomical Record, 1984
- The role of the neural crest in patterning of avian cranial skeletal, connective, and muscle tissuesDevelopmental Biology, 1983