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在动物模型斑马鱼中,大脑和行为的偏侧化与类似焦虑的特征有关吗?

Are cerebral and behavioural lateralization related to anxiety-like traits in the animal model zebrafish ()?

机构信息

Department of Biomedical Sciences, University of Padova, Padova, Italy.

Department of Biological and Chemical Sciences, Queen Mary University of London, London, UK.

出版信息

Laterality. 2021 Jan-Mar;26(1-2):144-162. doi: 10.1080/1357650X.2020.1854280. Epub 2020 Dec 17.

DOI:10.1080/1357650X.2020.1854280
PMID:33334244
Abstract

Brain lateralization refers to hemispheric asymmetries in functions and/or neuroanatomical structures. Functional specialization in non-human animals has been mainly inferred through observation of lateralized motor responses and sensory perception. Only in a few cases has the influence of brain asymmetries on behaviour been described. Zebrafish has rapidly become a valuable model to investigate this issue as it displays epithalamic asymmetries that have been correlated to some lateralized behaviours. Here we investigated the relation between neuroanatomical or behavioural lateralization and anxiety using a light-dark preference test in adult zebrafish. In Experiment 1, we observed how scototaxis response varied as a function of behavioural lateralization measured in the detour task as turning preference in front of a dummy predator. In Experiment 2, foxD3:GFP transgenic adult zebrafish with left or right parapineal position, were tested in the same light-dark test as fish in Experiment 1. No correlation was found between the behaviour observed in the detour test and in the scototaxis test nor between the left- and right-parapineal fish and the scototaxis response. The consistency of results obtained in both experiments indicates that neither behavioural nor neuroanatomical asymmetries are related to anxiety-related behaviours measured in the light-dark test.

摘要

大脑偏侧性是指功能和/或神经解剖结构的半球不对称。非人类动物的功能特化主要是通过观察偏侧运动反应和感觉感知来推断的。只有在少数情况下,才描述了大脑不对称对行为的影响。斑马鱼已迅速成为研究这一问题的有价值的模型,因为它表现出与一些偏侧化行为相关的视丘下部不对称。在这里,我们使用成年斑马鱼的明暗偏好测试来研究神经解剖或行为偏侧性与焦虑之间的关系。在实验 1 中,我们观察了在回避任务中测量的行为偏侧性如何作为 Scototaxis 反应的函数而变化,回避任务是指在假捕食者面前的转弯偏好。在实验 2 中,具有左或右副松果体位置的 foxD3:GFP 转基因成年斑马鱼与实验 1 中的鱼一起在相同的明暗测试中进行测试。在回避测试和 Scototaxis 测试中观察到的行为之间,以及左和右副松果体鱼与 Scototaxis 反应之间均未发现相关性。两个实验的结果一致性表明,在明暗测试中测量的焦虑相关行为与行为或神经解剖不对称无关。

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