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首页> 外文期刊>The Journal of Comparative Neurology >Evidence for generative homology of cerebellum and cerebellum‐like structures in an elasmobranch fish based on Pax6, Cbln1 Pax6, Cbln1 and Grid2 Grid2 expression
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Evidence for generative homology of cerebellum and cerebellum‐like structures in an elasmobranch fish based on Pax6, Cbln1 Pax6, Cbln1 and Grid2 Grid2 expression

机译:基于PAX6,CBLN1 PAX6,CBLN1和GRID2 GRID2表达的Elasmobranch鱼中生成细胞和小脑状结构的证据

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Abstract The majority of neurons in the mammalian brain reside within the cerebellum (Cb). Yet, the evolutionary origins of the Cb are not well understood. There are several sensory nuclei present across vertebrate phylogeny collectively termed cerebellum‐like structures (CbLS) due to a shared anatomy and physiology with the Cb. Despite the similarities, the CbLS are clearly not phylogenetically homologous with the Cb. Common structure and function may arise due to a shared genetic and developmental toolkit. To examine this possibility, we used sequence analysis, western blotting, immunohistochemistry and RT‐qPCR to test for the expression of three genes that are critical for mammalian cerebellar development in the Cb and CbLS of an elasmobranch fish, Leucoraja erinacea . In the mammalian Cb, Pax6 is necessary for parallel fiber development, while Cbln1 and Grid2 code for proteins necessary for parallel fiber‐principal cell synaptogenesis. Pax6 and Cbln1 are expressed by granule cells in the Cb and CbLS of the adult skate and stage 31 embryo. Grid2 is expressed by principal cells in the Cb and CbLS of the adult and stage 31 embryo. RT‐qPCR showed this expression is spatially and temporally restricted to the Cb and CbLS. If Pax6, Cbln1 and Grid2 perform the same functions in the skate Cb and CbLS as they do in the mammalian Cb, then these structures may develop using a shared genetic toolkit and be considered generatively homologous. It is possible that the evolutionary genesis of the Cb was the result of duplication or expansion of the cerebellum‐like developmental toolkit.
机译:摘要哺乳动物脑中的大部分神经元位于小脑(CB)内。然而,CB的进化起源并不充分了解。由于CB的共同解剖学和生理学,脊椎动物系统横血管系统串联的几种感觉核统称为小脑状结构(CBL)。尽管存在相似之处,CBL显然不是与CB的影响。由于共享的遗传和发育工具包,可能会出现共同的结构和功能。为了检查这种可能性,我们使用序列分析,蛋白质印迹,免疫组织化学和RT-QPCR来测试三种基因对哺乳动物CB和Elasmobranch鱼,Leucoraja erinacea的CB和CBL的CBL至关重要。在哺乳动物CB中,PAX6是平行纤维发育所必需的,而CBLN1和Grid2代码对于平行纤维主体细胞综合组织所需的蛋白质。 PAX6和CBLN1由成人冰鞋的CB和CBL中的颗粒细胞和31级胚胎表达。 Grid2由CB和成人和第31阶段胚胎的CB和CBL的主要细胞表达。 RT-QPCR显示该表达在空间上并暂时限制在CB和CBL上。如果PAX6,CBLN1和Grid2在哺乳动物CB中的冰鞋CB和CBL中执行相同的功能,则这些结构可以使用共享的遗传工具包来发展并且被认为是生成的同源的。 CB的进化成因可能是细胞样发育工具包重复或扩增的结果。

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