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Axial eye patterning determines the positional code of retinal ganglion cells (RGCs), which is crucial for their topographic projection to the midbrain. Several asymmetrically expressed determinants of retinal patterning are known, but it is unclear how axial polarity is first established. We find that Fgf signals, including Fgf8, determine retinal patterning along the nasotemporal (NT) axis during early zebrafish embryogenesis: Fgf8 induces nasal and/or suppresses temporal retinal cell fates; and inhibition of all Fgf-receptor signaling leads to complete retinal temporalization and concomitant loss of all nasal fates. Misprojections of RGCs with Fgf-dependent alterations in retinal patterning to the midbrain demonstrate the importance of this early patterning process for late topographic map formation. The crucial period of Fgf-dependent patterning is at the onset of eye morphogenesis. Fgf8 expression, the restricted temporal requirement for Fgf-receptor signaling and target gene expression at this stage suggests that the telencephalic primordium is the source of Fgf8 and acts as novel signaling center for non-autonomous axial patterning of the prospective neural retina.
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Development ePress online publication date 19 Oct 2005
doi: 10.1242/dev.02071
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Fgf signals from a novel signaling center determine axial patterning of the prospective neural retina
* Author for correspondence (e-mail: picker{at}mpi-cbg.de)
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N. A. Sanek, A. A. Taylor, M. K. Nyholm, and Y. Grinblat
Zebrafish zic2a patterns the forebrain through modulation of Hedgehog-activated gene expression
Development,
November 15, 2009;
136(22):
3791 - 3800.
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© The Company of Biologists Ltd 2005