A balance of FGF, BMP and WNT signalling positions the future placode territory in the head
- 15 September 2005
- journal article
- research article
- Published by The Company of Biologists in Development
- Vol. 132 (18) , 4051-4062
- https://doi.org/10.1242/dev.01964
Abstract
The sensory nervous system in the vertebrate head arises from two different cell populations: neural crest and placodal cells. By contrast, in the trunk it originates from neural crest only. How do placode precursors become restricted exclusively to the head and how do multipotent ectodermal cells make the decision to become placodes or neural crest? At neural plate stages,future placode cells are confined to a narrow band in the head ectoderm, the pre-placodal region (PPR). Here, we identify the head mesoderm as the source of PPR inducing signals, reinforced by factors from the neural plate. We show that several independent signals are needed: attenuation of BMP and WNT is required for PPR formation. Together with activation of the FGF pathway, BMP and WNT antagonists can induce the PPR in naïve ectoderm. We also show that WNT signalling plays a crucial role in restricting placode formation to the head. Finally, we demonstrate that the decision of multipotent cells to become placode or neural crest precursors is mediated by WNT proteins:activation of the WNT pathway promotes the generation of neural crest at the expense of placodes. This mechanism explains how the placode territory becomes confined to the head, and how neural crest and placode fates diversify.Keywords
This publication has 101 references indexed in Scilit:
- Early development of the cranial sensory nervous system: from a common field to individual placodesDevelopmental Biology, 2004
- Role of BMP signaling and the homeoprotein iroquois in the specification of the cranial placodal fieldDevelopmental Biology, 2004
- Molecular anatomy of placode development in Xenopus laevisDevelopmental Biology, 2004
- Segregation of lens and olfactory precursors from a common territory: cell sorting and reciprocity of Dlx5 and Pax6 expressionDevelopmental Biology, 2004
- Eya protein phosphatase activity regulates Six1–Dach–Eya transcriptional effects in mammalian organogenesisNature, 2003
- Ectodermal Patterning in Vertebrate EmbryosDevelopmental Biology, 1997
- The origins of neural crest cells in the axolotlDevelopmental Biology, 1990
- The restriction of the heart morphogenetic field in Xenopus laevisDevelopmental Biology, 1990
- Mediolateral cell intercalation in the dorsal, axial mesoderm of Xenopus laevisDevelopmental Biology, 1989
- Mapping of the early neural primordium in quail-chick chimerasDevelopmental Biology, 1985