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斑马鱼颅侧线管道和神经丘的胚后发育

Postembryonic development of the cranial lateral line canals and neuromasts in zebrafish.

作者信息

Webb Jacqueline F, Shirey Jonathan E

机构信息

Biology Department, Villanova University, Villanova, Pennsylvania 19085, USA.

出版信息

Dev Dyn. 2003 Nov;228(3):370-85. doi: 10.1002/dvdy.10385.

Abstract

The development of the cranial lateral line canals and neuromast organs are described in postembryonic zebrafish (0-80 days postfertilization). Cranial canal development commences several weeks after hatch, is initiated in the vicinity of individual neuromasts, and occurs in four discrete stages that are described histologically. Neuromasts remain in open canal grooves for several weeks during which they dramatically change shape and increase in size by adding hair cells at a rate one-tenth that in the zebrafish inner ear. Scanning electron microscopy demonstrates that neuromasts elongate perpendicular to the canal axis and the axis of hair cell polarization and that they lack a prominent nonsensory cell population surrounding the hair cells-features that make zebrafish neuromasts unusual among fishes. These results demand a reassessment of neuromast and lateral line canal diversity among fishes and highlight the utility of the lateral line system of postembryonic zebrafish for experimental and genetic studies of the development and growth of hair cell epithelia.

摘要

本文描述了胚胎后斑马鱼(受精后0至80天)颅侧线管和神经丘器官的发育情况。颅侧线管的发育在孵化后数周开始,始于单个神经丘附近,并经历四个不同的阶段,这些阶段通过组织学进行描述。神经丘在开放的管槽中停留数周,在此期间它们会显著改变形状,并通过以斑马鱼内耳十分之一的速率添加毛细胞来增大尺寸。扫描电子显微镜显示,神经丘垂直于管轴和毛细胞极化轴伸长,并且它们缺乏围绕毛细胞的突出的非感觉细胞群体——这些特征使斑马鱼的神经丘在鱼类中与众不同。这些结果需要重新评估鱼类中神经丘和侧线管的多样性,并突出了胚胎后斑马鱼侧线系统在毛细胞上皮发育和生长的实验及遗传研究中的实用性。

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