dackel acts in the ectoderm of the zebrafish pectoral fin bud to maintain AER signaling
Open Access
- 1 October 2000
- journal article
- Published by The Company of Biologists in Development
- Vol. 127 (19) , 4169-4178
- https://doi.org/10.1242/dev.127.19.4169
Abstract
Classical embryological studies have implied the existence of an apical ectodermal maintenance factor (AEMF) that sustains signaling from the apical ectodermal ridge (AER) during vertebrate limb development. Recent evidence suggests that AEMF activity is composed of different signals involving both a sonic hedgehog (Shh) signal and a fibroblast growth factor 10 (Fgf10) signal from the mesenchyme. In this study we show that the product of the dackel (dak) gene is one of the components that acts in the epidermis of the zebrafish pectoral fin bud to maintain signaling from the apical fold, which is homologous to the AER of tetrapods. dak acts synergistically with Shh to induce fgf4 and fgf8 expression but independently of Shh in promoting apical fold morphogenesis. The failure of dak mutant fin buds to progress from the initial fin induction phase to the autonomous outgrowth phase causes loss of both AER and Shh activity, and subsequently results in a proximodistal truncation of the fin, similar to the result obtained by ridge ablation experiments in the chicken. Further analysis of the dak mutant phenotype indicates that the activity of the transcription factor engrailed 1 (En1) in the ventral non-ridge ectoderm also depends on a maintenance signal probably provided by the ridge. This result uncovers a new interaction between the AER and the dorsoventral organizer in the zebrafish pectoral fin bud.Keywords
This publication has 35 references indexed in Scilit:
- Expression of Radical fringe in limb-bud ectoderm regulates apical ectodermal ridge formationNature, 1997
- Radical fringe positions the apical ectodermal ridge at the dorsoventral boundary of the vertebrate limbNature, 1997
- Cyclopia and defective axial patterning in mice lacking Sonic hedgehog gene functionNature, 1996
- Limbs: a model for pattern formation within the vertebrate body planTrends in Genetics, 1996
- The mouse Engrailed-1 gene and ventral limb patterningNature, 1996
- Interaction between the signaling molecules WNT7a and SHH during vertebrate limb development: Dorsal signals regulate anteroposterior patterningCell, 1995
- Dorsalizing signal Wnt-7a required for normal polarity of D–V and A–P axes of mouse limbNature, 1995
- How to Make a Limb?Science, 1994
- A positive feedback loop coordinates growth and patterning in the vertebrate limbNature, 1994
- The proximo‐distal sequence of origin of the parts of the chick wing and the role of the ectodermJournal of Experimental Zoology, 1948