首页> 外文期刊>The Journal of Comparative Neurology >A phylotypic stage in vertebrate brain development: GABA cell patterns in zebrafish compared with mouse.
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A phylotypic stage in vertebrate brain development: GABA cell patterns in zebrafish compared with mouse.

机译:脊椎动物大脑发育的系统发育阶段:与小鼠相比,斑马鱼中的GABA细胞模式。

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A recent comparison of early forebrain gene expression in mouse and zebrafish revealed highly comparable expression patterns of developmentally relevant genes, for example, of proneural (Neurogenin1, NeuroD, Mash1/Zash1a) genes involved in neurogenesis at a particular time window (mouse: embryonic day 12.5/13.5; zebrafish: 3 days). Here we extend this analysis to the description of gamma-aminobutyric acid (GABA) cell patterns in the early postembryonic zebrafish brain (i.e., during early secondary neurogenesis). We find again an astonishing degree of correspondences of GABA cell patterns between zebrafish and mouse during this previously established critical time window, for example, regarding absence of GABA cells in certain forebrain regions (pallium, dorsal thalamus, eminentia thalami) or with respect to the spatiotemporal occurrence of GABA cells (e.g., late cerebellar GABA cells). Furthermore, there is perfect correlation with previously established proneural gene expression patterns (i.e., absence of Mash1/Zash1a gene expression in GABA-cell-free forebrain regions) between mouse and zebrafish. The available information in additional vertebrate species, especially in Xenopus, is also highly consistent with our analysis here and suggests that a "phylotypic stage" of neurogenesis during vertebrate brain development may be present.
机译:最近对小鼠和斑马鱼中前脑早期基因表达的比较表明,发育相关基因的表达模式具有高度可比性,例如在特定时间窗口(小鼠:胚胎发育日),涉及神经发生的前神经元(Neurogenin1,NeuroD,Mash1 / Zash1a)基因的表达模式12.5 / 13.5;斑马鱼:3天)。在这里,我们将这种分析扩展到对早期胚胎后斑马鱼大脑中(即在早期继发性神经发生过程中)γ-氨基丁酸(GABA)细胞模式的描述。我们再次发现在先前确定的关键时间窗口内,斑马鱼和小鼠之间的GABA细胞模式的对应程度达到惊人的水平,例如,关于某些前脑区域(大脑皮层,背侧丘脑,丘脑突起)或相对于GABA细胞的缺乏GABA细胞(例如,小脑晚期GABA细胞)的时空发生。此外,与先前确定的小鼠和斑马鱼之间的proneural基因表达模式(即,在无GABA细胞的前脑区域中不存在Mash1 / Zash1a基因表达)有着完美的关联。其他脊椎动物物种(尤其是非洲爪蟾属)中的可用信息也与我们在此处的分析高度一致,并表明在脊椎动物大脑发育过程中可能会出现神经发生的“系统发育阶段”。

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