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Connectomics of the zebrafish's lateral-line neuromast reveals wiring and miswiring in a simple microcircuit

机译:斑马鱼侧线神经桅杆的连接组学揭示了简单的微电路中的接线和误接线

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The lateral-line neuromast of the zebrafish displays a restricted, consistent pattern of innervation that facilitates the comparison of microcircuits across individuals, developmental stages, and genotypes. We used serial blockface scanning electron microscopy to determine from multiple specimens the neuromast connectome, a comprehensive set of connections between hair cells and afferent and efferent nerve fibers. This analysis delineated a complex but consistent wiring pattern with three striking characteristics each nerve terminal is highly specific in receiving innervation from hair cells of a single directional sensitivity; the innervation is redundant; and the terminals manifest a hierarchy of dominance. Mutation of the canonical planar-cell-polarity gene vangl2, which decouples the asymmetric phenotypes of sibling hair-cell pairs, results in randomly positioned, randomly oriented sibling cells that nonetheless retain specific wiring. Because larvae that overexpress Notch exhibit uniformly oriented, uniformly innervating hair-cell siblings, wiring specificity is mediated by the Notch signaling pathway.
机译:斑马鱼的侧线神经桅杆显示出受限制的一致的神经支配模式,这有助于比较个体,发育阶段和基因型之间的微回路。我们使用连续的表面扫描电子显微镜从多个标本中确定了神经肥大的连接组,即毛细胞与传入和传出的神经纤维之间的综合连接。该分析描述了一种复杂但一致的接线方式,该接线方式具有三个醒目的特征,每个神经末梢在接受来自单一方向敏感性的毛细胞的神经支配方面具有高度特异性。神经支配是多余的;终端体现出主导地位。规范的平面细胞极性基因vangl2的突变使同胞毛细胞对的不对称表型解耦,导致随机定位,随机定向的同胞仍然保留特定的布线。因为过表达Notch的幼虫表现出均匀定向,均匀支配的毛细胞同胞,所以布线特异性由Notch信号传导途径介导。

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