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脑干蜗神经核复合体的组装通过交叉和减法基因命运图谱得以揭示。

Assembly of the brainstem cochlear nuclear complex is revealed by intersectional and subtractive genetic fate maps.

作者信息

Farago Anna F, Awatramani Rajeshwar B, Dymecki Susan M

机构信息

Department of Genetics, Harvard Medical School, 77 Avenue Louis Pasteur, Boston, Massachusetts 02115, USA.

出版信息

Neuron. 2006 Apr 20;50(2):205-18. doi: 10.1016/j.neuron.2006.03.014.

Abstract

The cochlear nuclear complex (CN) is the entry point for central auditory processing. Although constituent neurons have been studied physiologically, their embryological origins and molecular profiles remain obscure. Applying intersectional and subtractive genetic fate mapping approaches, we show that this complex develops modularly from genetically separable progenitor populations arrayed as rostrocaudal microdomains within and outside the hindbrain (lower) rhombic lip (LRL). The dorsal CN subdivision, structurally and topographically similar to the cerebellum, arises from microdomains unexpectedly caudal and noncontiguous to cerebellar primordium; ventral CN subdivisions arise from more rostral LRL. Magnocellular regions receive contributions from LRL and coaxial non-lip progenitors; contrastingly, ensheathing granule cells derive principally from LRL. Also LRL-derived and molecularly similar to CN granule cells are precerebellar mossy fiber neurons; surprisingly, these ostensibly intertwined populations have separable origins and adjacent but segregated migratory streams. Together, these findings provide new platforms for investigating the development and evolution of auditory and cerebellar systems.

摘要

耳蜗核复合体(CN)是中枢听觉处理的切入点。尽管对其组成神经元进行了生理学研究,但其胚胎起源和分子特征仍不清楚。应用交叉和减法遗传命运图谱方法,我们发现该复合体由基因上可分离的祖细胞群体模块化发育而来,这些祖细胞群体排列在后脑(下)菱形唇(LRL)内外的前后微域中。背侧CN细分在结构和地形上与小脑相似,起源于意外位于尾侧且与小脑原基不连续的微域;腹侧CN细分起源于更靠前的LRL。大细胞区域接受LRL和同轴非唇祖细胞的贡献;相反,包绕颗粒细胞主要来源于LRL。同样来源于LRL且在分子上与CN颗粒细胞相似的是小脑前苔藓纤维神经元;令人惊讶的是,这些表面上相互交织的群体有可分离的起源和相邻但分离的迁移流。总之,这些发现为研究听觉和小脑系统的发育和进化提供了新的平台。

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