Awatramani Rajeshwar, Soriano Philippe, Rodriguez Carolyn, Mai Jia Jia, Dymecki Susan M
Department of Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, Massachusetts 02115, USA.
Nat Genet. 2003 Sep;35(1):70-5. doi: 10.1038/ng1228. Epub 2003 Aug 17.
The hindbrain roof plate and choroid plexus are essential organizing centers for inducing dorsal neuron fates and sustaining neuron function. To map the formation of these structures, we developed a broadly applicable, high resolution, recombinase-based method for mapping the fate of cells originating from coordinates defined by intersecting combinations of expressed genes. Using this method, we show that distinct regions of hindbrain roof plate originate from discrete subdomains of rhombencephalic neuroectoderm expressing Wnt1; that choroid plexus, a secretory epithelium important for patterning later-formed hindbrain structures and maintaining neuron function, derives from the same embryonic primordium as the hindbrain roof plate; and that, unlike the floor plate, these dorsal organizing centers develop in a patterned, segmental manner, built from lineage-restricted compartments. Our data suggest that the roof plate and choroid plexus may be formed of functional units that are capable of differentially organizing the generation of distinct neuronal cell types at different axial levels.
后脑顶板和脉络丛是诱导背侧神经元命运和维持神经元功能的重要组织中心。为了绘制这些结构的形成过程,我们开发了一种广泛适用的、高分辨率的、基于重组酶的方法,用于绘制源自由表达基因的交叉组合定义的坐标的细胞命运。使用这种方法,我们表明后脑顶板的不同区域起源于表达Wnt1的菱脑神经外胚层的离散亚域;脉络丛是一种对后期形成的后脑结构模式化和维持神经元功能很重要的分泌上皮,它与后脑顶板来自相同的胚胎原基;并且,与底板不同,这些背侧组织中心以一种模式化的、节段性的方式发育,由谱系受限的区室构建而成。我们的数据表明,顶板和脉络丛可能由能够在不同轴向水平差异组织不同神经元细胞类型生成的功能单元组成。