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虹鳟(O. mykiss)消化过程中相关蛋白质基因表达的餐后动力学及饮食组成的影响

Postprandial kinetics of gene expression of proteins involved in the digestive process in rainbow trout (O. mykiss) and impact of diet composition.

作者信息

Borey Marion, Panserat Stephane, Surget Anne, Cluzeaud Marianne, Plagnes-Juan Elisabeth, Herman Alexandre, Lazzarotto Viviana, Corraze Geneviève, Médale Françoise, Lauga Beatrice, Burel Christine

机构信息

UMR1419 Nutrition, Métabolisme, Aquaculture, INRA, F-64310, Saint Pee sur Nivelle, France.

EEM, UMR 5254 IPREM, Equipe Environnement et Microbiologie, Université de Pau et des Pays de l'Adour, 64013, Pau, France.

出版信息

Fish Physiol Biochem. 2016 Aug;42(4):1187-202. doi: 10.1007/s10695-016-0208-4. Epub 2016 Feb 26.

Abstract

The impact of increased incorporation of plant ingredients on diets for rainbow trout was evaluated in terms of gene expression of gastric (gastric lipase, pepsinogen) and intestinal (prolidase, maltase, phospholipase A2) digestive enzymes and nutrient transporters (peptide and glucose transporters), as well as of postprandial levels of plasma glucose, triglycerides and total free amino acids. For that purpose, trout alevins were fed from the start of exogenous feeding one of three different experimental diets: a diet rich in fish meal and fish oil (FM-FO), a plant-based diet (noFM-noFO) totally free from fish meal and fish oil, but containing plant ingredients and a Mixed diet (Mixed) intermediate between the FM-FO and noFM-noFO diets. After 16 months of rearing, all fish were left unfed for 72 h and then given a single meal to satiation. Blood, stomach and anterior intestine were sampled before the meal and at 2, 6 and 12 h after this meal. The postprandial kinetics of gene expression of gastric and intestinal digestive enzymes and nutrient transporters were then followed in trout fed the FM-FO diet. The postprandial profiles showed that the expression of almost all genes studied was stimulated by the presence of nutrients in the digestive tract of trout, but the timing (appearance of peaks) varied between genes. Based on these data, we have focused on the molecular response to dietary factors in the stomach and the intestine at 6 and 12 h after feeding, respectively. The reduction in FM and FO levels of dietary incorporation induced a significant decrease in the gene expression of gastric lipase, GLUT2 and PEPT1. The plasma glucose and triglycerides levels were also reduced in trout fed the noFM-noFO diet. Consequently, the present study suggests a decrease in digestive capacities in trout fed a diet rich in plant ingredients.

摘要

通过评估虹鳟鱼胃(胃脂肪酶、胃蛋白酶原)和肠道(脯氨酰二肽酶、麦芽糖酶、磷脂酶A2)消化酶以及营养物质转运蛋白(肽和葡萄糖转运蛋白)的基因表达,以及餐后血浆葡萄糖、甘油三酯和总游离氨基酸水平,来评价增加植物成分在虹鳟鱼日粮中的添加量所产生的影响。为此,从外源投喂开始,给虹鳟鱼苗投喂三种不同的实验日粮之一:富含鱼粉和鱼油的日粮(FM-FO)、完全不含鱼粉和鱼油但含有植物成分的植物性日粮(noFM-noFO),以及介于FM-FO和noFM-noFO日粮之间的混合日粮(Mixed)。饲养16个月后,所有鱼禁食72小时,然后一次性投喂至饱足。在投喂前以及投喂后2、6和12小时采集血液、胃和前肠样本。随后在投喂FM-FO日粮的虹鳟鱼中追踪胃和肠道消化酶以及营养物质转运蛋白基因表达的餐后动力学。餐后曲线表明,几乎所有研究基因的表达都受到虹鳟鱼消化道中营养物质的刺激,但不同基因的峰值出现时间有所不同。基于这些数据,我们分别关注了投喂后6小时和12小时胃和肠道对日粮因素的分子反应。日粮中鱼粉和鱼油添加量的减少导致胃脂肪酶、GLUT2和PEPT1的基因表达显著降低。投喂noFM-noFO日粮的虹鳟鱼血浆葡萄糖和甘油三酯水平也有所降低。因此,本研究表明,投喂富含植物成分日粮的虹鳟鱼消化能力下降。

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