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斑马鱼(Danio rerio)发育过程中侧线传入神经的异质性和动态变化。

Heterogeneity and dynamics of lateral line afferent innervation during development in zebrafish (Danio rerio).

机构信息

The Whitney Laboratory for Marine Bioscience, Department of Biology, University of Florida, St. Augustine, Florida 32080, USA.

出版信息

J Comp Neurol. 2012 May 1;520(7):1376-86. doi: 10.1002/cne.22798.

Abstract

The lateral line system of larval zebrafish is emerging as a model to study a range of topics in neurobiology, from hair cell regeneration to sensory processing. However, despite numerous studies detailing the patterning and development of lateral line neuromasts, little is known about the organization of their connections to afferent neurons and targets in the hindbrain. We found that as fish grow and neuromasts proliferate over the body surface, the number of afferent neurons increases linearly. The number of afferents innervating certain neuromasts increases over time, while it decreases for other neuromasts. The ratio of afferent neurons to neuromasts differs between the anterior and posterior lateral line system, suggesting potential differences in sensitivity threshold or spatial resolution. A single afferent neuron routinely contacts a group of neuromasts, suggesting that different afferent neurons can convey information about receptive fields along the body. When afferent projections are traced into the hindbrain, where a distinct somatotopy has been previously described, we find that this general organization is absent at the Mauthner cell. We speculate that directional input from the lateral line is less important at an early age, whereas the speed of the escape response is paramount, and that directional responses arise later in development. By quantifying morphological connections in the lateral line system, this study provides a detailed foundation to understand how hydrodynamic information is processed and ultimately translated into appropriate motor behaviors.

摘要

鱼类胚胎的侧线系统正逐渐成为神经生物学领域研究的模型,涵盖从毛细胞再生到感觉处理等多个课题。然而,尽管有许多研究详细描述了侧线神经丘的模式形成和发育,但对于其与后脑传入神经元和靶点的连接组织知之甚少。我们发现,随着鱼类的生长和体表神经丘的增殖,传入神经元的数量呈线性增加。某些神经丘的传入神经元数量随时间增加,而其他神经丘的传入神经元数量则减少。前侧线系统和后侧线系统的传入神经元与神经丘的比例不同,这表明其在敏感性阈值或空间分辨率上可能存在差异。单个传入神经元通常与一组神经丘接触,这表明不同的传入神经元可以传递关于身体部位的感受野的信息。当传入投射被追踪到先前已描述具有明显体节图的后脑时,我们发现这种一般组织在 Mauthner 细胞中不存在。我们推测,在早期,来自侧线的定向输入并不重要,而逃避反应的速度至关重要,并且定向反应是在发育后期出现的。通过定量分析侧线系统的形态连接,本研究为理解水动力信息如何被处理并最终转化为适当的运动行为提供了详细的基础。

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