Homeobox genes and the vertebrate head
- 1 September 1988
- journal article
- review article
- Published by The Company of Biologists in Development
- Vol. 103 (Supplement) , 17-24
- https://doi.org/10.1242/dev.103.supplement.17
Abstract
Several Drosophila genes important in the control of embryonic development contain a characteristic sequence of DNA, known as the homeobox. Homeobox sequences are also present in a family of vertebrate genes, which may therefore have regulatory roles during vertebrate embryogenesis. In this article, data concerning the spatial patterns of vertebrate homeobox gene expression are discussed in relation to recent descriptive and experimental analyses of head development. It is concluded that the patterns of gene expression are consistent with homeobox genes having roles in anteroposterior positional specification within the developing brain and possibly the neural crest. The data are not clearly consistent with these genes having direct roles in controlling the patterns of cranial segmentation, although further studies may reveal whether vertebrate segments are units of developmental specification.Keywords
This publication has 44 references indexed in Scilit:
- Expression of the murine homeo box gene Hox 1.5 during embryogenesisDevelopmental Biology, 1987
- Cell Line Segregation During Peripheral Nervous System OntogenyScience, 1986
- Segmentation and neural development in vertebratesTrends in Neurosciences, 1985
- Parasegments and compartments in the Drosophila embryoNature, 1985
- The engrailed locus of drosophila: Structural analysis of an embryonic transcriptCell, 1985
- Early vertebrate evolution: pharyngeal structure and the origin of gnathostomesJournal of Zoology, 1984
- Developmental biology: A Rosetta stone for pattern formation in animals?Nature, 1984
- Developmental biology: A universal genetic key to body plan?Nature, 1984
- 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