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DHA but not EPA, enhances sound induced escape behavior and Mauthner cells activity in Sparus aurata

机译:DHA但不是EPA,可增强声音在Sparus aurata中引起的逃逸行为和Mauthner细胞活性

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Dietary omega. 3 long chain polyunsaturated fatty acids (n. 3 LCPUFA), eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), have a marked effect on fish behavior. There is limited information on the mechanisms involved in this effect and its relation to neuron development and functioning. Deficiency of n. 3 LCPUFA reduces fish escape swimming. Mauthner cells (M-cell) are neurons responsible for initiating an escape response. The aim was to compare the effect of dietary DHA and EPA on escape behavior and neuronal activity of sea bream larvae. We studied burst swimming speed as a measure of behavior. M-cell activity was studied by ChAT immuno-fluorescence. Feeding the lowest n. 3 LCPUFA levels a lower burst swimming speed. Increase in dietary EPA did not significantly improve escape response. Elevation of dietary DHA was correlated with a higher burst speed denoting the importance of this nutrient for escape swimming. Incorporation of DHA into larval tissues was proportional to DHA dietary levels and significantly correlated with burst speed. In addition, a higher immunoreactivity to ChAT, associated to a higher neural activity, was found in M-cell of larvae fed higher dietary DHA contents. These results show first evidence of n. 3 LCPUFA on fish neuronal activity and their implications in behavior, denoting that DHA boosts escape swimming and this effect is at least partly mediated by the increase in neural activity of M-cell.
机译:饮食中的欧米茄。 3种长链多不饱和脂肪酸(n。3 LCPUFA),二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)对鱼类行为有显着影响。关于此效应涉及的机制及其与神经元发育和功能的关系的信息有限。缺乏3 LCPUFA减少鱼逃逸游泳。 Mauthner细胞(M细胞)是负责发起逃避反应的神经元。目的是比较日粮DHA和EPA对on鱼幼虫逃避行为和神经元活性的影响。我们研究了爆发游泳速度作为行为的量度。通过ChAT免疫荧光研究了M细胞活性。喂最低的n。 3 LCPUFA降低了突发游泳速度。饮食中EPA含量的增加并未明显改善逃逸反应。饮食中DHA的升高与较高的爆发速度相关,这表明该营养素对于逃逸游泳的重要性。将DHA掺入幼虫组织中与DHA饮食水平成正比,并且与爆发速度显着相关。此外,在饲喂较高日粮DHA含量的幼虫M细胞中,发现与ChAT更高的免疫反应性与更高的神经活性相关。这些结果显示出n的第一个证据。 3 LCPUFA对鱼类神经元活动及其行为的影响,表明DHA促进了逃逸游泳,这种作用至少部分是由M细胞神经活动的增加介导的。

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