Department of Biomedical Sciences, Ontario Veterinary College, University of Guelph, 50 Stone Road, Guelph, Ontario, Canada.
Anat Rec (Hoboken). 2012 Oct;295(10):1669-82. doi: 10.1002/ar.22544. Epub 2012 Aug 3.
The advantages of the embryonic chick as a model for studying neural development range from the relatively low cost of fertilized eggs to the rapid rate of development. We investigated in ovo cerebellar development in the chick, which has a nearly identical embryonic period as the mouse (19-22 days). We focused on three antigens: Calbindin (CB), Zebrin II (ZII), and Calretinin (CR), and our results demonstrate asynchronous expression patterns during cerebellar development. Presumptive CB+ Purkinje cells are first observed at embryonic day (E)10 in clusters in posterior cerebellum. At E12, corresponding with global expression of CB across the cerebellum, Purkinje cells began to express ZII. By E14-E16, Purkinje cells disperse into a monolayer and develop a pattern of alternating immunopositive and immunonegative ZII stripes. CR is initially expressed by clusters of presumptive Purkinje cells in the nodular zone at E8. However, this expression is transient and at later stages, CR is largely confined to the granule and molecular layers. Before hatch (E18-E20), Purkinje cells adopt a morphologically mature phenotype with complex dendritic arborizations. Comparing this data to that seen in mice, we found that the sequence of Purkinje cell formation, protein expression, and development is similar in both species, but these events consistently begin ∼5-7 days earlier in the precocial chick cerebellum, suggesting an important role for heterochrony in neurodevelopment.
鸡胚作为研究神经发育模型的优势在于受精鸡蛋的相对低成本和快速的发育速度。我们研究了鸡胚小脑的发育,其胚胎期与小鼠(19-22 天)几乎相同。我们专注于三种抗原:钙结合蛋白(CB)、Zebrin II(ZII)和钙调蛋白(CR),我们的结果表明它们在小脑发育过程中的表达模式不同步。推定的 CB+浦肯野细胞最早在胚胎第 10 天(E)在小脑后部的簇中观察到。在 E12 时,CB 在整个小脑广泛表达,浦肯野细胞开始表达 ZII。到 E14-E16,浦肯野细胞分散成单层,并发展出交替免疫阳性和免疫阴性 ZII 条纹的模式。CR 最初由结节区的推定浦肯野细胞簇在 E8 时表达。然而,这种表达是短暂的,在后期阶段,CR 主要局限于颗粒层和分子层。在孵化前(E18-E20),浦肯野细胞采用具有复杂树突分支的形态成熟表型。将这些数据与在小鼠中看到的数据进行比较,我们发现两种物种的浦肯野细胞形成、蛋白表达和发育的顺序相似,但这些事件在早熟鸡胚小脑中的出现时间提前了约 5-7 天,表明异时性在神经发育中起着重要作用。