The isthmic organizer links anteroposterior and dorsoventral patterning in the mid/hindbrain by generating roof plate structures
- 15 November 2003
- journal article
- Published by The Company of Biologists in Development
- Vol. 130 (22) , 5331-5338
- https://doi.org/10.1242/dev.00756
Abstract
During vertebrate development, an organizing signaling center, the isthmic organizer, forms at the boundary between the midbrain and hindbrain. This organizer locally controls growth and patterning along the anteroposterior axis of the neural tube. On the basis of transplantation and ablation experiments in avian embryos, we show here that, in the caudal midbrain, a restricted dorsal domain of the isthmic organizer, that we call the isthmic node, is both necessary and sufficient for the formation and positioning of the roof plate, a signaling structure that marks the dorsal midline of the neural tube and that is involved in its dorsoventral patterning. This is unexpected because in other regions of the neural tube, the roof plate has been shown to form at the site of neural fold fusion, which is under the influence of epidermal ectoderm derived signals. In addition, the isthmic node contributes cells to both the midbrain and hindbrain roof plates, which are separated by a boundary that limits cell movements. We also provide evidence that mid/hindbrain roof plate formation involves homeogenetic mechanisms. Our observations indicate that the isthmic organizer orchestrates patterning along the anteroposterior and the dorsoventral axis.Keywords
This publication has 28 references indexed in Scilit:
- The isthmic neuroepithelium is essential for cerebellar midline fusionDevelopment, 2003
- The midbrain–hindbrain boundary organizerCurrent Opinion in Neurobiology, 2001
- Neural plate patterning: Upstream and downstream of the isthmic organizerNature Reviews Neuroscience, 2001
- Otx2, Gbx2 and Fgf8 interact to position and maintain a mid–hindbrain organizerCurrent Opinion in Cell Biology, 2000
- Midbrain development induced by FGF8 in the chick embryoNature, 1996
- Involvement of Wnt-1 in the formation of the mes/metencephalic boundaryMechanisms of Development, 1995
- Chick/quail chimeras with partial cerebellar grafts: An analysis of the origin and migration of cerebellar cellsJournal of Comparative Neurology, 1993
- Expression of the homeobox Chick-en gene in chick/quail chimeras with inverted mes-metencephalic graftsDevelopmental Biology, 1990
- Pluripotentiality of the 2-day-old avian germinative neuroepitheliumDevelopmental Biology, 1990
- Plasticity and rigidity of differentiation of brain vesicles studied in quail-chick chimerasCell Differentiation, 1986