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首页> 外文期刊>BMC Genomics >Effects of the total replacement of fish-based diet with plant-based diet on the hepatic transcriptome of two European sea bass (Dicentrarchus labrax) half-sibfamilies showing different growth rates with the plant-based diet
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Effects of the total replacement of fish-based diet with plant-based diet on the hepatic transcriptome of two European sea bass (Dicentrarchus labrax) half-sibfamilies showing different growth rates with the plant-based diet

机译:以植物性饮食完全替代以鱼为基础的饮食对两个欧洲鲈鱼(Dicentrarchus labrax)半同族的肝转录组的影响与植物性饮食不同

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Background Efforts towards utilisation of diets without fish meal (FM) or fish oil (FO) in finfish aquaculture have been being made for more than two decades. Metabolic responses to substitution of fishery products have been shown to impact growth performance and immune system of fish as well as their subsequent nutritional value, particularly in marine fish species, which exhibit low capacity for biosynthesis of long-chain poly-unsaturated fatty acids (LC-PUFA). The main objective of the present study was to analyse the effects of a plant-based diet on the hepatic transcriptome of European sea bass (Dicentrarchus labrax). Results We report the first results obtained using a transcriptomic approach on the liver of two half-sibfamilies of the European sea bass that exhibit similar growth rates when fed a fish-based diet (FD), but significantly different growth rates when fed an all-plant diet (VD). Overall gene expression was analysed using oligo DNA microarrays (GPL9663). Statistical analysis identified 582 unique annotated genes differentially expressed between groups of fish fed the two diets, 199 genes regulated by genetic factors, and 72 genes that exhibited diet-family interactions. The expression of several genes involved in the LC-PUFA and cholesterol biosynthetic pathways was found to be up-regulated in fish fed VD, suggesting a stimulation of the lipogenic pathways. No significant diet-family interaction for the regulation of LC-PUFA biosynthesis pathways could be detected by microarray analysis. This result was in agreement with LC-PUFA profiles, which were found to be similar in the flesh of the two half-sibfamilies. In addition, the combination of our transcriptomic data with an analysis of plasmatic immune parameters revealed a stimulation of complement activity associated with an immunodeficiency in the fish fed VD, and different inflammatory status between the two half-sibfamilies. Biological processes related to protein catabolism, amino acid transaminations, RNA splicing and blood coagulation were also found to be regulated by diet, while the expression of genes involved in protein and ATP synthesis differed between the half-sibfamilies. Conclusions Overall, the combined gene expression, compositional and biochemical studies demonstrated a large panel of metabolic and physiological effects induced by total substitution of both FM and FO in the diets of European sea bass and revealed physiological characteristics associated with the two half-sibfamilies.
机译:背景技术在有鳍鱼类养殖中,人们一直致力于不使用鱼粉(FM)或鱼油(FO)的饮食。已证明对水产品替代物的代谢反应会影响鱼的生长性能和免疫系统及其随后的营养价值,特别是在海水鱼类中,这些鱼类对长链多不饱和脂肪酸(LC)的生物合成能力较低。 -PUFA)。本研究的主要目的是分析植物性饮食对欧洲鲈鱼(Dicentrarchus labrax)肝转录组的影响。结果我们报告了使用转录组学方法在两个欧洲鲈鱼的半同胞肝的肝脏上获得的第一个结果,这些半同胞在以鱼为基础的饮食(FD)喂养下显示出相似的增长率,而在以全鱼饲料喂养时显示出明显不同的增长率。植物饮食(VD)。使用寡DNA微阵列(GPL9663)分析总体基因表达。统计分析确定了582种独特的注释基因在两种日粮的鱼群之间差异表达,199种受遗传因素调控的基因和72种表现出饮食与家庭相互作用的基因。发现在饲喂鱼的VD中,涉及LC-PUFA和胆固醇生物合成途径的几个基因的表达上调,表明刺激了脂肪生成途径。通过微阵列分析无法检测到饮食-家庭之间的相互作用来调节LC-PUFA的生物合成途径。此结果与LC-PUFA谱相吻合,在两个半同族的肉中发现相似。此外,我们的转录组数据与血浆免疫参数分析相结合,揭示了补体活性的刺激与补饲VD的鱼的免疫缺陷有关,并且两个半同胞之间有不同的炎症状态。饮食还发现与蛋白质分解代谢,氨基酸转氨作用,RNA剪接和凝血有关的生物过程受到调节,而半同胞之间蛋白质和ATP合成相关基因的表达也有所不同。结论总体而言,结合基因表达,组成和生化研究表明,在欧洲鲈鱼饮食中,FM和FO完全替代可诱导大量代谢和生理作用,并揭示了两个半同胞亲缘相关的生理特征。

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