MRC Centre for Developmental and Biomedical Genetics and Department of Biomedical Science, University of Sheffield, Sheffield S10 2TN, UK.
Development. 2011 Jun;138(12):2613-24. doi: 10.1242/dev.062794.
The infundibulum links the nervous and endocrine systems, serving as a crucial integrating centre for body homeostasis. Here we describe that the chick infundibulum derives from two subsets of anterior ventral midline cells. One set remains at the ventral midline and forms the posterior-ventral infundibulum. A second set migrates laterally, forming a collar around the midline. We show that collar cells are composed of Fgf3(+) SOX3(+) proliferating progenitors, the induction of which is SHH dependent, but the maintenance of which requires FGF signalling. Collar cells proliferate late into embryogenesis, can generate neurospheres that passage extensively, and differentiate to distinct fates, including hypothalamic neuronal fates and Fgf10(+) anterior-dorsal infundibular cells. Together, our study shows that a subset of anterior floor plate-like cells gives rise to Fgf3(+) SOX3(+) progenitor cells, demonstrates a dual origin of infundibular cells and reveals a crucial role for FGF signalling in governing extended infundibular growth.
漏斗将神经系统和内分泌系统联系起来,是体内平衡的关键整合中心。在这里,我们描述了鸡漏斗起源于两个前腹中线细胞亚群。一组保持在腹中线并形成后腹漏斗。第二组向侧面迁移,围绕中线形成一个领圈。我们表明,领圈细胞由 Fgf3(+)SOX3(+)增殖祖细胞组成,其诱导依赖于 SHH,但维持需要 FGF 信号。领圈细胞在胚胎发生后期增殖,可以产生广泛传代的神经球,并分化为不同的命运,包括下丘脑神经元命运和 Fgf10(+)前背漏斗细胞。总之,我们的研究表明,前地板样细胞的一个亚群产生 Fgf3(+)SOX3(+)祖细胞,证明了漏斗细胞的双重起源,并揭示了 FGF 信号在控制漏斗的广泛生长中的关键作用。