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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Fate-mapping the mammalian hindbrain: segmental origins of vestibular projection neurons assessed using rhombomere-specific Hoxa2 enhancer elements in the mouse embryo.
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Fate-mapping the mammalian hindbrain: segmental origins of vestibular projection neurons assessed using rhombomere-specific Hoxa2 enhancer elements in the mouse embryo.

机译:命运映射哺乳动物的后脑:前庭投射神经元的节段起源使用小鼠胚胎中的菱形特定于Hoxa2增强子元素评估。

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摘要

As a step toward generating a fate map of identified neuron populations in the mammalian hindbrain, we assessed the contributions of individual rhombomeres to the vestibular nuclear complex, a major sensorimotor area that spans the entire rhombencephalon. Transgenic mice harboring either the lacZ or the enhanced green fluorescent protein reporter genes under the transcriptional control of rhombomere-specific Hoxa2 enhancer elements were used to visualize rhombomere-derived domains. We labeled functionally identifiable vestibular projection neuron groups retrogradely with conjugated dextran-amines at successive embryonic stages and obtained developmental fate maps through direct comparison with the rhombomere-derived domains in the same embryos. The fate maps show that each vestibular neuron group derives from a unique rostrocaudal domain that is relatively stable developmentally, suggesting that anteroposterior migration is not a major contributor to the rostrocaudal patterning of the vestibular system. Most of the groups are multisegmental in origin, and each rhombomere is fated to give rise to two or more vestibular projection neuron types, in a complex pattern that is not segmentally iterated. Comparison with studies in the chicken embryo shows that the rostrocaudal patterning of identified vestibular projection neuron groups is generally well conserved between avians and mammalians but that significant species-specific differences exist in the rostrocaudal limits of particular groups. This mammalian hindbrain fate map can be used as the basis for targeting genetic manipulation to specific subpopulations of vestibular projection neurons.
机译:作为朝着在哺乳动物后脑中确定神经元种群的命运图谱迈进的一步,我们评估了单个菱形对前庭核复合体的贡献,前庭核复合体是跨越整个菱形脑的主要感觉运动区域。带有lacZ或增强的绿色荧光蛋白报道基因的转基因小鼠在菱形特异性Hoxa2增强子元件的转录控制下被用来可视化菱形衍生的域。我们在连续的胚胎阶段用共轭右旋糖酐胺逆行标记了功能可识别的前庭投射神经元组,并通过与同一胚胎中菱形衍生来源的域进行直接比较获得了发育的命运图。命运图显示,每个前庭神经元组均来自一个在发育上相对稳定的独特的尾脑尾状结构域,这表明前后移位不是前庭系统的尾状脑结构的主要贡献者。大多数组的起源是多段的,每个菱形都注定会产生两种或更多种前庭投射神经元类型,并且没有分段重复的复杂模式。与鸡胚研究的比较表明,在鸟类和哺乳动物之间,识别出的前庭投射神经元群的后尾纹通常保持良好,但特定群体的后尾纹界限存在明显的物种特异性差异。该哺乳动物后脑命运图可以用作将遗传操纵靶向前庭投射神经元的特定亚群的基础。

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