Department of Psychology, University of Toronto, 3359 Mississauga Road North, Mississauga, Ontario, Canada.
Behav Brain Res. 2010 Feb 11;207(1):99-104. doi: 10.1016/j.bbr.2009.09.043. Epub 2009 Oct 2.
Zebrafish has been gaining increasing amount of interest in behavioral neuroscience as this species may represent a good compromise between system complexity and practical simplicity. Particularly successful have been those studies that utilized zebrafish as a screening tool. Given the complexity of the mechanisms of learning, for example, forward genetic screens with zebrafish could potentially reveal previously unknown genes and molecular pathways that subserve this function. These screens, however, require appropriate phenotypical (e.g. behavioral) paradigms. A step in this direction is the characterization of learning abilities of zebrafish. Here we employ two classical learning tasks in a plus maze. In the first, zebrafish are required to associate a visible cue with food reward irrespective of the location of this pairing. In the second, zebrafish are required to associate the spatial location of food reward irrespective of intra-maze cues. Our results demonstrate that zebrafish perform well in both tasks and show significant acquisition of the association between cue and reward as well as between location and reward. We conclude that zebrafish, similar to classical laboratory rodents, may have utility in the biological analysis of simple as well as complex forms of associative learning.
斑马鱼在行为神经科学中越来越受到关注,因为这种物种在系统复杂性和实际简单性之间可能是一个很好的折衷。特别是那些将斑马鱼用作筛选工具的研究取得了成功。例如,考虑到学习机制的复杂性,使用斑马鱼进行正向遗传筛选可能会揭示以前未知的基因和分子途径,这些基因和分子途径支持这种功能。然而,这些筛选需要适当的表型(例如行为)范式。朝着这个方向迈出的一步是描述斑马鱼的学习能力。在这里,我们在一个正字迷宫中使用了两个经典的学习任务。在第一个任务中,斑马鱼需要将可见线索与食物奖励相关联,而不考虑配对的位置。在第二个任务中,斑马鱼需要将食物奖励的空间位置与迷宫内的线索相关联。我们的结果表明,斑马鱼在这两个任务中表现良好,并且在线索和奖励之间以及位置和奖励之间的关联上表现出明显的习得。我们得出结论,类似于经典的实验室啮齿动物,斑马鱼可能在简单和复杂形式的联想学习的生物学分析中具有实用性。