A clock-work somite
- 24 January 2000
Abstract
Somites are transient structures which represent the most overt segmental feature of the vertebrate embryo. The strict temporal regulation of somitogenesis is of critical developmental importance since many segmental structures adopt a periodicity based on that of the somites. Until recently, the mechanisms underlying the periodicity of somitogenesis were largely unknown. Based on the oscillations of c-hairy1 and lunatic fringe RNA, we now have evidence for an intrinsic segmentation clock in presomitic cells. Translation of this temporal periodicity into a spatial periodicity, through somite formation, requires Notch signaling. While the Hox genes are certainly involved, it remains unknown how the metameric vertebrate axis becomes regionalized along the antero-posterior (AP) dimension into the occipital, cervical, thoracic, lumbar, and sacral domains. We discuss the implications of cell division as a clock mechanism underlying the regionalization of somites and their derivatives along the AP axis. Possible links between the segmentation clock and axial regionalization are also discussed. BioEssays 22:72-83, 2000.Keywords
This publication has 76 references indexed in Scilit:
- Interaction between Notch signalling and Lunatic fringe during somite boundary formation in the mouseCurrent Biology, 1999
- Clocked gene expression in somite formationBioEssays, 1998
- Presenilin 1 is required for Notch 1 and Dll1 expression in the paraxial mesodermNature, 1997
- fringe, a boundary-specific signaling molecule, mediates interactions between dorsal and ventral cells during Drosophila wing developmentCell, 1994
- Effects of mesodermal tissues on avian neural crest cell migrationDevelopmental Biology, 1991
- Indeterminate cell lineage of the zebrafish embryoDevelopmental Biology, 1987
- Segmentation in the vertebrate nervous systemNature, 1984
- A clock and wavefront model for control of the number of repeated structures during animal morphogenesisJournal of Theoretical Biology, 1976
- Early regionalization of the somitic mesoderm as studied by the development of the axial skeleton of the chick embryoDevelopmental Biology, 1972
- The Effects of Changes in Chromosome Number on Amphibian DevelopmentThe Quarterly Review of Biology, 1945