Hox genes and the diversification of insect and crustacean body plans
- 1 August 1995
- journal article
- Published by Springer Nature in Nature
- Vol. 376 (6539) , 420-423
- https://doi.org/10.1038/376420a0
Abstract
Crustaceans and insects share a common origin of segmentation, but the specialization of trunk segments appears to have arisen independently in insects and various crustacean subgroups. Such macroevolutionary changes in body architecture may be investigated by comparative studies of conserved genetic markers. The Hox genes are well suited for this purpose, as they determine positional identity along the body axis in a wide range of animals. Here we examine the expression of four Hox genes in the branchiopod crustacean Artemia franciscana, and compare this with Hox expression patterns from insects. In Artemia the three 'trunk' genes Antp, Ubx and abdA are expressed in largely overlapping domains in the uniform thoracic region, whereas in insects they specify distinct segment types within the thorax and abdomen. Our comparisons suggest a multistep process for the diversification of these Hox gene functions, involving early differences in tissue specificity and the later acquisition of a role in defining segmental differences within the trunk. We propose that the branchiopod thorax may be homologous to the entire pregenital (thoracic and abdominal) region of the insect trunk.Keywords
This publication has 24 references indexed in Scilit:
- Evolution of homeotic gene regulation and function in flies and butterfliesNature, 1994
- Evolution of distinct developmental functions of three Drosophila genes by acquisition of different cis-regulatory regionsNature, 1994
- Homeotic gene expression in the locustSchistocerca: An antibody that detects conserved epitopes in ultrabithorax and abdominal‐A proteinsDevelopmental Genetics, 1994
- Structure and function of the homeotic gene complex (HOM‐C) in the beetle, Tribolium castaneumBioEssays, 1993
- HOM/Hox genes of Artemia: implications for the origin of insect and crustacean body plansCurrent Biology, 1993
- The zootype and the phylotypic stageNature, 1993
- Homeotic genes of the bithorax complex repress limb development in the abdomen of the Drosophila embryo through the target gene Distal-lessCell, 1992
- Loss of gene function through rapid mitotic cycles in the Drosophila embryoNature, 1992
- Homeobox genes and axial patterningPublished by Elsevier ,1992
- V. On a new type of crustacean from the old red sandstone (Rhymie Chert Bed, Aberdeenshire) — Lepidocaris rhyniensis , gen. et sp. novPhilosophical Transactions of the Royal Society of London. Series B, Containing Papers of a Biological Character, 1926