Effects of early-life amino acids supplementation on fish responses to a thermal challenge

Carmen Navarro-Guillén, Ismael Jerez-Cepa, André Lopes, Juan Miguel Mancera, Sofia Engrola
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Abstract

Nutritional programming is a promising concept for promoting metabolic adaptation of fish to challenging conditions, such as the increase in water temperature. The present work evaluates in ovo arginine or glutamine supplementation as enhancers of zebrafish metabolic or absorptive capacity, respectively, at optimum (28 ºC) and challenging temperatures (32 ºC) in the long-term. Growth performance, free amino acids profile, methylation index and the activity levels of digestive and intermediary metabolism enzymes were analysed to assess the metabolic plasticity induced by an early nutritional intervention. Temperature affected fish larvae growth performance. At the end of the experimental period 28 ºC-fish showed higher dry weight than 32 ºC-fish. The effects of the early supplementation were reflected in the larval free amino acids profile at the end of the experiment. Higher methylation potential was observed in the ARG-fish. In ovo amino acid supplementation modulated the metabolic response in zebrafish larvae, however, the magnitude of this effect differed according to the amino acid and the temperature. Overall, arginine supplementation enhanced carbohydrates metabolism at 32 ºC. In conclusion, the present work suggests that in ovo arginine supplementation may promote a better adaptive response to higher temperatures.

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生命早期补充氨基酸对鱼类热挑战反应的影响
营养编程是促进鱼类新陈代谢适应挑战性条件(如水温升高)的一个有前途的概念。本研究评估了在最适温度(28 ºC)和挑战性温度(32 ºC)下分别补充精氨酸或谷氨酰胺作为斑马鱼新陈代谢或吸收能力的长期增强剂的效果。分析了斑马鱼的生长性能、游离氨基酸谱、甲基化指数以及消化酶和中间代谢酶的活性水平,以评估早期营养干预诱导的代谢可塑性。温度影响鱼类幼体的生长表现。在实验期结束时,28 ºC 的鱼干重高于 32 ºC 的鱼。早期补充营养的效果反映在实验结束时幼鱼游离氨基酸的分布上。在 ARG 鱼中观察到了更高的甲基化潜能。在卵内补充氨基酸可调节斑马鱼幼体的代谢反应,但这种影响的程度因氨基酸和温度而异。总体而言,在 32 ºC 温度下,补充精氨酸可促进碳水化合物代谢。总之,本研究表明,在卵内补充精氨酸可促进对较高温度的适应性反应。
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