Affiliation:
1. RIKEN Brain Science Institute, 2-1 Hirosawa, Wako-Shi, Saitama 351-0198,Japan.
Abstract
The vertebrate thalamus contains multiple sensory nuclei and serves as a relay station to receive sensory information and project to corresponding cortical areas. During development, the progenitor region of the diencephalon is divided into three parts, p1, p2 (presumptive thalamus) and p3, along its longitudinal axis. Besides the local expression of signaling molecules such as sonic hedgehog (Shh), Wnt proteins and Fgf8, the patterning mechanisms of the thalamic nuclei are largely unknown. Using mouse in utero electroporation to overexpress or inhibit endogenous Fgf8 at the diencephalic p2/p3 border, we revealed that it affected gene expression only in the p2 region without altering overall diencephalic size or the expression of other signaling molecules. We demonstrated that two distinctive populations in p2,which can be distinguished by Ngn2 and Mash1 in early embryonic diencephalon, are controlled by Fgf8 activity in complementary manner. Furthermore, we found that FGF activity shifts thalamic sensory nuclei on the A/P axis in postnatal brain. Moreover, gene expression analysis demonstrated that FGF signaling shifts prethalamic nuclei in complementary manner to the thalamic shift. These findings suggest conserved roles of FGF signaling in patterning along the A/P axis in CNS, and reveal mechanisms of nucleogenesis in the developing thalamus.
Publisher
The Company of Biologists
Subject
Developmental Biology,Molecular Biology
Reference55 articles.
1. Agarwala, S., May, J. G. 3rd, Moore, J. K. and Petry, H. M.(1992). Immunohistochemical organization of the ventral lateral geniculate nucleus in the ground squirrel. J. Comp. Neurol.318,255-266.
2. Agarwala, S., Sanders, T. A. and Ragsdale, C. W.(2001). Sonic hedgehog control of size and shape in midbrain pattern formation. Science291,2147-2150.
3. Altman, J. and Bayer, S. A. (1988). Development of the rat thalamus: III. Time and site of origin and settling pattern of neurons of the reticular nucleus. J. Comp. Neurol.275,406-428.
4. Bachy, I., Vernier, P. and Retaux, S. (2001). The LIM-homeodomain gene family in the developing Xenopus brain: conservation and divergences with the mouse related to the evolution of the forebrain. J. Neurosci.21,7620-7629.
5. Braun, M. M., Etheridge, A., Bernard, A., Robertson, C. P. and Roelink, H. (2003). Wnt signaling is required at distinct stages of development for the induction of the posterior forebrain. Development130,5579-5589.
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