Problems and paradigms: Hoemeobox genes in vertebrate evolution
- 1 April 1992
- Vol. 14 (4) , 267-273
- https://doi.org/10.1002/bies.950140412
Abstract
A wide range of anatomical features are shared by all vertebrates, but absent in our closest invertebrate relatives. The origin of vertebrate embryogenesis must have involved the evolution of new regulatory pathways to control the development of new features, but how did this occur? Mutations affecting regulatory genes, including those containing homeobox sequences, may have been important: for example, perhaps gene duplications allowed recruitment of genes to new roles. Here I ask whether comparative data on the genomic organization and expression patterns of homeobox genes support this hypothesis. I propose a model in which duplications of particular homeobox genes, followed by the acquisition of gene-specific secondary expression domains, allowed the evolution of the neural crest, extensive organogenesis and craniofacial morphogenesis. Specific details of the model are amenable to testing by extension of this comparative approach to molecular embryology.Keywords
This publication has 51 references indexed in Scilit:
- Cloning of segment polarity gene homologues from the unsegmented brachiopod Terebratulina retusa (Linnaeus)FEBS Letters, 1991
- Expression patterns of mouse hox genes: Clues to an understanding of developmental and evolutionary strategiesBioEssays, 1991
- Pax: A murine multigene family of paired box-containing genesGenomics, 1991
- Disruption of the Hox-1.6 homeobox gene results in defects in a region corresponding to its rostral domain of expressionCell, 1991
- Nematode homeobox clusterNature, 1991
- Subtle Cerebellar Phenotype in Mice Homozygous for a Targeted Deletion of the En-2 HomeoboxScience, 1991
- Cloning and evolutionary analysis of msh-like homeobox genes from mouse, zebrafish and ascidianGene, 1991
- Conservation of engrailed‐like homeobox sequences during vertebrate evolutionFEBS Letters, 1990
- Coordinate expression of the murine Hox-5 complex homoeobox-containing genes during limb pattern formationNature, 1989
- Molecular Phylogeny of the Animal KingdomScience, 1988