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父母长链多不饱和脂肪酸(LC-PUFA)生物合成能力和用α-亚麻酸进行营养干预会影响后代的表现。

Parental LC-PUFA biosynthesis capacity and nutritional intervention with alpha-linolenic acid affect performance of progeny.

机构信息

Aquaculture Research Group (GIA), IU-ECOAQUA, Universidad de Las Palmas de Gran Canaria, Crta. Taliarte s/n, 35214 Telde, Spain

Department of Biology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

J Exp Biol. 2020 Dec 7;223(Pt 23):jeb214999. doi: 10.1242/jeb.214999.

Abstract

Environmental factors such as nutritional interventions during early developmental stages affect and establish long-term metabolic changes in all animals. Diet during the spawning period has a nutritional programming effect in offspring of gilthead seabream and affects long-term metabolism. Studies showed modulation of genes such as , which is considered to be a rate-limiting step in the synthesis of -3 long-chain polyunsaturated fatty acids (-3 LC-PUFA). However, it is still unknown whether this adaptation is related to the presence of precursors or to limitations in the pre-formed products, -3 LC-PUFA, contained in the diets used during nutritional programming. This study investigated the combined effects of nutritional programming on through broodstock diets during the spawning period and in broodfish showing higher or lower expression levels in the blood after 1 month of feeding with a diet containing high levels of plant protein sources and vegetable oils (VM/VO). Broodfish showing high expression had a noticeable improvement in spawning quality parameters as well as in the growth of 6 month old offspring when challenged with a high VM/VO diet. Further, nutritional conditioning with 18:3-3-rich diets had an adverse effect in comparison to progeny obtained from fish fed high fish meal and fish oil (FM/FO) diets, with a reduction in growth of juveniles. Improved growth of progeny from the high broodstock combined with similar muscle fatty acid profiles is also an excellent option for tailoring and increasing the flesh -3 LC-PUFA levels to meet the recommended dietary allowances for human consumption.

摘要

环境因素,如早期发育阶段的营养干预,会影响并建立所有动物的长期代谢变化。产卵期的饮食对金头鲷的后代具有营养编程效应,并影响长期代谢。研究表明,基因的调节,如 ,被认为是 -3 长链多不饱和脂肪酸 (-3 LC-PUFA)合成的限速步骤。然而,目前尚不清楚这种适应是与前体的存在有关,还是与营养编程期间所用饮食中 -3 LC-PUFA 预先形成产物的限制有关。本研究通过产卵期亲鱼的饮食,调查了营养编程对 的综合影响,以及在食用高植物蛋白和植物油(VM/VO)饮食 1 个月后血液中 表达水平较高或较低的亲鱼中的作用。表达水平较高的亲鱼在产卵质量参数以及 6 个月大的后代生长方面表现出显著改善,当用高 VM/VO 饮食挑战时。此外,与用高鱼粉和鱼油(FM/FO)饮食喂养的鱼类相比,用富含 18:3-3 的饮食进行营养调节会产生不良影响,导致幼鱼生长减少。高亲鱼后代的生长得到改善,肌肉脂肪酸谱相似,这也是一种很好的选择,可以调整和增加鱼肉中 -3 LC-PUFA 的含量,以满足人类消费的推荐膳食允许量。

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