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幼鱼斑马鱼(Danio rerio)的替代惊跳运动模式和行为。

Alternative startle motor patterns and behaviors in the larval zebrafish (Danio rerio).

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, Chicago, IL 60637, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Jan;198(1):11-24. doi: 10.1007/s00359-011-0682-1. Epub 2011 Oct 8.

Abstract

In fishes, the C-start behavior, initiated with a C-shaped body bend, is a taxonomically common and widely studied escape response. Its simple neural circuit has made this behavior a model for examining neural control of movement. The S-start, initiated with an S-shaped body bend, is a physiologically distinct escape that occurs in esocid fishes. Here we examine whether zebrafish larvae perform S-starts in order to better understand startle diversity and to attempt to identify the S-start in a system that is tractable for neurobiological studies. We found that larval zebrafish startles varied in the extent of their caudal bending, resulting in C, S and intermediate-shaped responses. We recorded two distinct motor patterns: nearly simultaneous initial activity along one side of the body, characteristic of C-starts, and nearly simultaneous activity rostrally on one side and caudally on the other, characteristic of S-starts. Head stimulation generally elicited C-starts while tail stimulation elicited C- and S-starts. These results demonstrate that the S-start is more common than previously documented and occurs in early developmental stages. We suggest that the S-start may be a fundamental escape behavior in fishes and may provide a comparative model to the C-start for understanding simple neural circuits.

摘要

在鱼类中,C 型身体弯曲启动的 C 型行为是一种分类学上常见且广泛研究的逃避反应。其简单的神经回路使这种行为成为研究运动神经控制的模型。S 型行为,由 S 型身体弯曲启动,是一种在 esocid 鱼类中发生的生理上不同的逃避行为。在这里,我们研究了斑马鱼幼虫是否会进行 S 型启动,以便更好地理解惊吓的多样性,并尝试在一个适合神经生物学研究的系统中识别 S 型启动。我们发现,幼虫斑马鱼的惊吓反应在尾部弯曲程度上有所不同,导致 C 型、S 型和中间形状的反应。我们记录了两种不同的运动模式:身体一侧几乎同时发生的初始活动,这是 C 型启动的特征,以及身体一侧几乎同时发生的活动和另一侧尾部的活动,这是 S 型启动的特征。头部刺激通常会引起 C 型启动,而尾部刺激会引起 C 型和 S 型启动。这些结果表明,S 型启动比以前记录的更为常见,并且发生在早期发育阶段。我们认为,S 型启动可能是鱼类的一种基本逃避行为,并可能为理解简单的神经回路提供一个与 C 型启动相比的模型。

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