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斑马鱼幼体感觉运动反应的发育:野生型与GCaMP6s转基因品系的比较

Development of sensorimotor responses in larval zebrafish: A comparison between wild-type and GCaMP6s transgenic line.

作者信息

Caperaa Margaux, Roland-Caverivière Mathilde, Herdman Chelsea, Imloul Nesrine, Poulin Sandrine, Lemieux Mado, De Koninck Paul, Bossé Gabriel D

机构信息

CERVO Brain Research Centre, Québec City, QC, Canada; Department of Psychiatry and Neurosciences, Faculty of Medicine, Université Lava, Québec City, QC, Canada.

CERVO Brain Research Centre, Québec City, QC, Canada; Department of Biochemistry, Microbiology and Bioinformatics, Faculty of Science and Engineering, Université Laval, Québec City, QC, Canada.

出版信息

Behav Brain Res. 2025 Mar 12;481:115412. doi: 10.1016/j.bbr.2024.115412. Epub 2024 Dec 31.

Abstract

During early development, zebrafish larvae exhibit stereotypical behaviors, which rapidly become more complex. Thus, generating mutant transgenic lines that maintain transparency throughout their larval stage and that can be used to record brain activity has offered strategic opportunities to investigate the underlying neural correlates of behavior establishment. However, few studies have documented the sensorimotor profile of these lines during larval development. Here, we set up a behavioral characterization using diverse stimuli (light and vibration) throughout larval development to compare the responses of a transgenic strain expressing a pan-neuronal calcium indicator (GCaMP6s) with that of a wild-type strain. Interestingly, we report a drastic switch in behavioral responses to light transitions at 11 days post-fertilization (dpf) and to vibration stimuli at 14 dpf in both lines. These data highlight a specific time window representing an increase in behavioral complexity. Meanwhile, we found some differences in the maturation of sensorimotor responses between GCaMP6s and wild-type strains. Although some of these differences are minor, they highlight the need for careful attention when using mutant/transgenic lines for behavioral studies. Overall, our results support using GCaMP6s strain in investigating the neural mechanisms underlying the developmental maturation of sensorimotor responses.

摘要

在早期发育过程中,斑马鱼幼体表现出刻板行为,这些行为会迅速变得更加复杂。因此,培育在整个幼体阶段都保持透明且可用于记录大脑活动的突变转基因品系,为研究行为建立的潜在神经关联提供了战略机遇。然而,很少有研究记录这些品系在幼体发育过程中的感觉运动特征。在此,我们在整个幼体发育过程中使用多种刺激(光和振动)建立了行为特征描述,以比较表达泛神经元钙指示剂(GCaMP6s)的转基因品系和野生型品系的反应。有趣的是,我们报告在两条品系中,受精后11天(dpf)对光转换的行为反应以及14 dpf对振动刺激的行为反应发生了剧烈转变。这些数据突出了一个代表行为复杂性增加的特定时间窗口。同时,我们发现GCaMP6s品系和野生型品系在感觉运动反应成熟方面存在一些差异。尽管其中一些差异较小,但它们凸显了在使用突变体/转基因品系进行行为研究时需要仔细关注。总体而言,我们的结果支持使用GCaMP6s品系来研究感觉运动反应发育成熟的神经机制。

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