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普通长腹蝗(沃克)正常及热激胚胎中腿部弦音感器官的发育

Development of leg chordotonal sensory organs in normal and heat shocked embryos of the cricket Teleogryllus commodus (Walker).

作者信息

Klose M

机构信息

Max-Planck-Institut für Verhaltensphysiologie, Abteilung Huber, D-82319, Seewiesen, Germany.

出版信息

Rouxs Arch Dev Biol. 1996 May;205(7-8):344-355. doi: 10.1007/BF00377214.

Abstract

This paper describes the embryonic development of some parts of the sensory peripheral nervous system in the leg anlagen of the cricket Teleogryllus commodus in normal and heat shocked embryos. The first peripheral neurons appear at the 30% stage of embryogenesis. These tibial pioneer neurons grow on a stereotyped path to the central nervous system and form a nerve which is joined by the growth cones of axons that arise later, including those from the femoral chordotonal organ, subgenual organ and tympanal organ. The development of these organs is described with respect to the increase in number of sensory receptor cells and the shape and position of the organs. At the 100% stage of embryogenesis all three organs have completed their development in terms of the number of sense cells and have achieved an adult shape. To study the function of the tibial pioneer neurons during embryogenesis a heat shock was used to prevent their development. Absence of these neurons has no effect on the development of other neurons and organs proximal to them. However, the development of distal neurons and organs guided by them is impaired. The tibial pioneer neurons grow across the segmental boundary between femur and tibia early in development, and the path they form seems to be essential for establishing the correct connections of the distal sense organs with the central nervous system.

摘要

本文描述了正常胚胎和热激胚胎中,家蟋腿部原基感觉外周神经系统某些部分的胚胎发育过程。第一批外周神经元出现在胚胎发育的30%阶段。这些胫节先驱神经元沿着固定路径向中枢神经系统生长,并形成一条神经,随后出现的轴突生长锥,包括来自股弦音器、膝下器和鼓膜器的轴突生长锥会加入这条神经。文中描述了这些器官在感觉受体细胞数量增加以及器官形状和位置方面的发育情况。在胚胎发育的100%阶段,所有这三个器官在感觉细胞数量方面都已完成发育,并呈现出成体形状。为了研究胚胎发育过程中胫节先驱神经元的功能,采用热激法阻止它们的发育。这些神经元的缺失对其近端的其他神经元和器官的发育没有影响。然而,由它们引导的远端神经元和器官的发育受到损害。胫节先驱神经元在发育早期跨越股骨和胫节之间的节段边界生长,它们形成的路径似乎对于建立远端感觉器官与中枢神经系统的正确连接至关重要。

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