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Functional analysis finds differences on the muscle transcriptome of pigs fed an n-3 PUFA-enriched diet with or without antioxidant supplementations

机译:功能分析发现添加或不添加抗氧化剂的富含n-3 PUFA饮食的猪的肌肉转录组存在差异

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摘要

Supplementing pig diets with n-3 polyunsaturated fatty acids (n-3 PUFA) may produce meat products with an increased n-3 fatty acid content, and the combined antioxidants addition could prevent lipid oxidation in the feed. However, to date, the effects of these bioactive compounds at the molecular level in porcine skeletal muscle are mostly unknown. This study aimed to analyse changes in the Longissimus thoracis transcriptome of 35 pigs fed three diets supplemented with: linseed (L); linseed, vitamin E and Selenium (LES) or linseed and plant-derived polyphenols (LPE). Pigs were reared from 80.8 ± 5.6 kg to 151.8 ± 9.9 kg. After slaughter, RNA-Seq was performed and 1182 differentially expressed genes (DEGs) were submitted to functional analysis. The L vs LES comparison did not show differences, while L vs LPE showed 1102 DEGs and LES vs LPE 80 DEGs. LPE compared to the other groups showed the highest number of up-regulated genes involved in preserving muscle metabolism and structure. Results enlighten that the combined supplementation of bioactive lipids (n-3 PUFA from linseed) with plant extracts as a source of polyphenols increases, compared to the only addition of linseed, the expression of genes involved in mRNA metabolic processes and transcriptional regulation, glucose uptake and, finally, in supporting muscle development and physiology. These results improve the knowledge of the biological effect of bioactive compounds in Longissimus thoracis muscle, and sustain the growing interest over their use in pig production.
机译:在猪日粮中添加n-3多不饱和脂肪酸(n-3 PUFA)可能会产生具有增加的n-3脂肪酸含量的肉类产品,并且添加的抗氧化剂可以防止饲料中的脂质氧化。但是,迄今为止,这些生物活性化合物在猪骨骼肌分子水平上的作用尚不清楚。这项研究旨在分析35种补充三种日粮的猪的亚麻籽的Longissimus thoracis转录组的变化。亚麻籽,维生素E和硒(LES)或亚麻籽和植物衍生的多酚(LPE)。将猪从80.8±5.6千克饲养到151.8±9.9千克。宰杀后,进行RNA-Seq测序,将1182个差异表达基因(DEG)进行功能分析。 L与LES的比较未显示差异,而L与LPE的显示为1102度,LES与LPE的显示为80度。与其他组相比,LPE显示参与维护肌肉代谢和结构的上调基因数量最多。结果表明,与仅添加亚麻籽相比,将生物活性脂质(亚麻籽中的n-3 PUFA)与植物提取物作为多酚来源的组合补充增加,参与mRNA代谢过程和转录调控,葡萄糖摄取的基因表达最后,在支持肌肉发育和生理方面。这些结果提高了人们对活性成分在胸最长肌中生物学作用的认识,并使人们对其在猪生产中的用途越来越感兴趣。

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