首页> 外文期刊>Brain research. Developmental brain research >Detailed immunohistology of Pax6 protein and tyrosine hydroxylase in the early zebrafish brain suggests role of Pax6 gene in development of dopaminergic diencephalic neurons.
【24h】

Detailed immunohistology of Pax6 protein and tyrosine hydroxylase in the early zebrafish brain suggests role of Pax6 gene in development of dopaminergic diencephalic neurons.

机译:早期斑马鱼大脑中Pax6蛋白和酪氨酸羟化酶的详细免疫组织学研究提示Pax6基因在多巴胺能双脑神经元发育中的作用。

获取原文
获取原文并翻译 | 示例
           

摘要

Spatiotemporal developmental dynamics of Pax6 protein containing (i.e., Pax6) cells were investigated immunohistochemically in embryonic and postembryonic zebrafish brain sections (especially at 2 and 5 day), allowing for a neuroanatomically detailed resolution previously only reported for the mouse. Besides strikingly close correspondences of early Pax6 domains - including many spatiotemporal changes - in mouse and zebrafish brains, some critical differences were noted. There is no pallial (i.e., cortical) Pax6 expression domain in the ventricular proliferative layer in the zebrafish as in the mouse. The main pallial Pax6 domain in the zebrafish is comparable to the migrating stream of Pax6 cells at the pallial-subpallial boundary. This indicates that some developmental functions of Pax6 (i.e., inhibition of subpallial cell migration into pallium by Pax6 migrating stream) might be shared with the mouse and maybe all vertebrates, while others (i.e., control of intrapallial neuronal radial migration via Pax6 expressing radial glia cells) may be special for mammals. Another prominent feature in the early zebrafish forebrain is that the alar plate ventral thalamic Pax6 domain extends far caudolaterally into the periphery of the basal plate posterior tuberculum and hypothalamic inferior lobe. This indicates that the alar plate ventral thalamus invades the forebrain basal plate and contributes to the development of basal forebrain structures. The close spatiotemporal association of Pax6 cells and TH cells of the ventral thalamus indicates a local role of Pax6 in the development of ventral thalamic (as recently demonstrated in the mouse) and, maybe, posterior tubercular TH cells. However, our confocal microscopical analysis of zebrafish brain sections double-immunostained for Pax6 and TH did not reveal cells double-labeled for these two proteins in this location, but rather indicates an inductive interaction of Pax6 cells onto TH cells.
机译:含Pax6蛋白(即Pax6)细胞的时空发育动力学在胚胎和胚胎后斑马鱼脑切片中进行了免疫组织化学研究(特别是在第2天和第5天),从而获得了以前仅针对小鼠报道的神经解剖学详细解析。除了在小鼠和斑马鱼的大脑中早期Pax6结构域的紧密对应关系(包括许多时空变化)之外,还注意到了一些关键的差异。与小鼠一样,斑马鱼的心室增生层中没有丘状(即皮质)Pax6表达结构域。斑马鱼中的主要Pallial Pax6结构域与在Pallal-Pallall边界处的Pax6细胞迁移流相当。这表明Pax6的某些发育功能(即通过Pax6迁移流抑制肾下膜细胞迁移到苍白中)可能与小鼠甚至所有脊椎动物共享,而其他功能(即通过表达Pax6的radial神经胶质控制腹膜内神经元径向迁移)细胞)可能对哺乳动物特别。早期斑马鱼前脑的另一个显着特征是,阿拉尔板腹侧丘脑的Pax6结构域向后方延伸至基底板后结核和下丘脑下叶的外围。这表明阿拉尔板腹侧丘脑侵入了前脑基底板,并有助于基底前脑结构的发展。 Pax6细胞与腹侧丘脑TH细胞的紧密时空关联表明Pax6在腹侧丘脑(如最近在小鼠中证实)以及后结核性TH细胞的发育中具有局部作用。但是,我们对斑马鱼脑部切片进行共聚焦显微镜分析,对Pax6和TH进行了双重免疫染色,并未发现在该位置对这两种蛋白质进行了双重标记的细胞,而是表明了Pax6细胞对TH细胞的诱导性相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号