Rodriguez C I, Dymecki S M
Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.
Neuron. 2000 Sep;27(3):475-86. doi: 10.1016/s0896-6273(00)00059-3.
The precerebellar system provides the principal input to the cerebellum and is essential for coordinated motor activity. Using a FLP recombinase-based fate mapping approach, we provide direct evidence in the mouse that this ventral brainstem system derives from dorsally located rhombic neuroepithelium. Moreover, by fate mapping at the resolution of a gene expression pattern, we have uncovered an unexpected subdivision within the precerebellar primordium: embryonic expression of Wnt1 appears to identify the class of precerebellar progenitors that will later project mossy fibers from the brainstem to the cerebellum, as opposed to the class of precerebellar neurons that project climbing fibers. Differential gene expression therefore appears to demarcate two populations within the precerebellar primordium, grouping progenitors by their future type of axonal projection and synaptic partner rather than by final topographical position.
小脑前系统为小脑提供主要输入,对协调运动活动至关重要。利用基于FLP重组酶的命运图谱方法,我们在小鼠中提供了直接证据,表明这个腹侧脑干系统起源于背侧的菱脑神经上皮。此外,通过在基因表达模式分辨率下进行命运图谱分析,我们在小脑前原基中发现了一个意外的细分:Wnt1的胚胎表达似乎可以识别出一类小脑前祖细胞,这些祖细胞随后将从脑干向小脑投射苔藓纤维,这与投射攀缘纤维的小脑前神经元类别不同。因此,差异基因表达似乎在小脑前原基中划分出两个群体,根据它们未来的轴突投射类型和突触伙伴而非最终的拓扑位置对祖细胞进行分组。