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Development of an evolutionarily novel structure: fibroblast growth factor expression in the carapacial ridge of turtle embryos.
- Source :
-
The Journal of experimental zoology [J Exp Zool] 2001 Oct 15; Vol. 291 (3), pp. 274-81. - Publication Year :
- 2001
-
Abstract
- The turtle shell, an evolutionarily novel structure, contains a bony exoskeleton that includes a dorsal carapace and a ventral plastron. The development of the carapace is dependent on the carapacial ridge (CR), a bulge in the dorsal flank that contains an ectodermal structure analogous to the apical ectodermal ridge (AER) of the developing limb (Burke. 1989a. J Morphol 199:363-378; Burke. 1989b. Fortschr Zool 35:206-209). Although the CR is thought to mediate the initiation and outgrowth of the carapace, the mechanisms of shell development have not been studied on the molecular level. Here, we present data suggesting that carapace formation is initiated by co-opting genes that had other functions in the ancestral embryo, specifically those of limb outgrowth. However, there is divergence in the signaling repertoire from that involved in limb initiation and outgrowth. In situ hybridizations with antisense riboprobes derived from Trionyx spiniferous fibroblast growth factor-10 (tfgf10) and Trachemys scripta (T. scripta) fibroblast-growth factor 8 (tfgf8) cDNAs were performed on sections of early T. scripta embryos (< 30 days). Expression of tfgf10 was localized to the mesenchyme subjacent to the ectoderm of the CR. In the chick limb bud, FGF10 is known to be expressed in the early limb-forming mesenchyme and is capable of inducing FGF8 in the AER to initiate the outgrowth of the limb bud. Although the expression of tfgf8 was found in the AER of the developing turtle limb, it was not seen in the CR. Thus, the initiation of the carapace is in agreement with FGF10 expression in the CR, but FGF8 does not appear to have a role in mediating early carapace outgrowth.<br /> (Copyright 2001 Wiley-Liss, Inc.)
- Subjects :
- Animals
Base Sequence
Embryonic Development
Fibroblast Growth Factors pharmacology
In Situ Hybridization
Molecular Sequence Data
Turtles anatomy & histology
Turtles growth & development
Biological Evolution
Bone Development genetics
Fibroblast Growth Factors biosynthesis
Gene Expression Regulation, Developmental
Turtles genetics
Subjects
Details
- Language :
- English
- ISSN :
- 0022-104X
- Volume :
- 291
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- The Journal of experimental zoology
- Publication Type :
- Academic Journal
- Accession number :
- 11598915
- Full Text :
- https://doi.org/10.1002/jez.1103