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Further characterisation of differences between TL and AB zebrafish (Danio rerio): Gene expression physiology and behaviour at day 5 of the larval stage

机译:TL和AB斑马鱼之间的差异的进一步表征(Danio rerio):幼虫期第5天的基因表达生理和行为

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摘要

Zebrafish (Danio rerio) have become popular as model organism in research. Many strains are readily available, which not only differ morphologically, but also genetically, physiologically and behaviourally. Here, we focus on the AB and Tupfel long-fin (TL) strain for which we have previously shown that adults differ in baseline hypothalamus-pituitary-interrenal (HPI)-axis activity (AB higher than TL) affecting inhibitory avoidance behaviour (absent in AB). To assess whether strain differences are already present in early life stages, we compared baseline HPI-axis related gene expression as well as cortisol levels, (neuro)development related as well as (innate) immune system related gene expression, and light-dark as well as startle behaviour in larvae 5 days post fertilisation. The data show that AB and TL larvae differ in baseline HPI-axis activity (AB higher than TL), expression of (neuro)development and immune system related genes (AB higher than TL), habituation to acoustic/vibrational stimuli (AB habituate faster than TL) and light-dark induced changes in motor behaviour (AB stronger than TL). Our data show that already in larval stages differences exist between zebrafish of the AB and TL strain confirming and extending data of earlier studies. To what extent the mutation in connexin 41.8, leading to spots rather than stripes in TL, but also (possibly) affecting eye, heart and brain function, is involved in the expression of (some of) these differences needs to be studied. These results emphasise that differences between strains need to be taken into account to enhance reproducibility both within, and between, laboratories.
机译:斑马鱼(Danio rerio)已成为研究中的模型生物。很容易获得许多菌株,它们不仅在形态上不同,而且在遗传,生理上和行为上也不同。在这里,我们集中于AB和Tupfel长鳍(TL)菌株,我们先前已经证明它们的成年人下丘脑-垂体-肾间质(HPI)轴活动(AB高于TL)会影响抑制回避行为(不存在)在AB中)。为了评估在生命早期阶段是否已经存在菌株差异,我们比较了基线HPI轴相关基因表达,皮质醇水平,(神经)发育相关以及(先天)免疫系统相关基因表达,以及明暗关系。受精后5天幼虫的惊吓行为。数据显示,AB和TL幼虫的基线HPI轴活性(AB高于TL),(神经)发育的表达和免疫系统相关基因(AB高于TL),对声音/振动刺激的适应性(AB适应性更快)有所不同。比TL)和明暗诱导的运动行为变化(AB比TL强)。我们的数据表明,在幼虫阶段,AB和TL菌株的斑马鱼之间已经存在差异,这证实并扩展了早期研究的数据。连接蛋白41.8的突变在多大程度上导致了TL中的斑点而不是条纹,而且(可能)影响了眼睛,心脏和大脑的功能,这些差异(其中一些)的表达也需要进行研究。这些结果强调,必须考虑菌株之间的差异,以增强实验室内部和实验室之间的可重复性。

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