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首页> 外文期刊>eLife journal >Directional selectivity of afferent neurons in zebrafish neuromasts is regulated by Emx2 in presynaptic hair cells
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Directional selectivity of afferent neurons in zebrafish neuromasts is regulated by Emx2 in presynaptic hair cells

机译:突触前毛细胞中Emx2调节斑马鱼神经质传入神经元的方向选择性

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摘要

The orientation of hair bundles on top of sensory hair cells (HCs) in neuromasts of the lateral line system allows fish to detect direction of water flow. Each neuromast shows hair bundles arranged in two opposing directions and each afferent neuron innervates only HCs of the same orientation. Previously, we showed that this opposition is established by expression of Emx2 in half of the HCs, where it mediates hair bundle reversal (Jiang et al., 2017). Here, we show that Emx2 also regulates neuronal selection afferent neurons innervate either Emx2-positive or negative HCs. In emx2 knockout and gain-of-function neuromasts, all HCs are unidirectional and the innervation patterns and physiological responses of the afferent neurons are dependent on the presence or absence of Emx2. Our results indicate that Emx2 mediates the directional selectivity of neuromasts by two distinct processes regulating hair bundle orientation in HCs and selecting afferent neuronal targets.
机译:侧线系统神经质中感觉毛细胞(HCs)顶部的发束方向使鱼能够检测水流的方向。每个神经桅杆显示沿两个相反方向排列的发束,每个传入神经元仅神经支配相同方向的HC。之前,我们证明了这种反对是通过在一半的HC中表达Emx2建立的,它介导了发束逆转(Jiang et al。,2017)。在这里,我们显示Emx2还调节神经元选择传入神经元神经支配Emx2阳性或阴性HCs。在emx2基因敲除和功能获得性神经瘤中,所有HC都是单向的,传入神经元的神经支配模式和生理反应取决于Emx2的存在与否。我们的结果表明,Emx2通过调节HCs的发束方向和选择传入神经元靶标的两个不同过程来介导神经质的方向选择性。

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