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Regulation of Dietary Lipid Sources on Tissue Lipid Classes and Mitochondrial Energy Metabolism of Juvenile Swimming Crab, Portunus trituberculatus

机译:膳食脂质来源对幼体梭子蟹的组织脂质类别和线粒体能量代谢的调节三疣梭子蟹

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An 8-weeks feeding trial with swimming crab, Portunus trituberculatus , was conducted to investigate the effects of different dietary lipid sources on the lipid classes, lipid metabolism, and mitochondrial energy metabolism relevant genes expression. Six isonitrogenous and isolipidic experimental diets were formulated to contain fish oil (FO), krill oil (KO), palm oil (PO), rapeseed oil (RO), soybean oil (SO), and linseed oil (LO), respectively. A total of 270 swimming crab juveniles (initial weight 5.43 ± 0.03 g) were randomly divided into six diets with three replications, each consisted of 45 juvenile crabs. The results revealed that crabs fed KO had highest lipid content in hepatopancreas and free fatty acids in serum among all diets. The anabolic pathway relevant genes: fas and acc were up-regulated in KO diet. The catabolic pathway relevant genes, hsl , was up-regulated in LO diet, while cpt1 was up-regulated in KO diet. Whereas, the genes involved in the transport and uptake of fatty acids such as fabp1 and fatp4 were down-regulated in crab fed PO and RO diets. Furthermore, the gene expression levels of transcription factors: srebp-1 and hnf4 α in KO and SO diets were the highest among all diets. FO and KO diets had significantly higher unsaturation index of mitochondrial membrane than others. The genes related to mitochondrial energy metabolism, such as Atpase6 , sirt1 , and sirt3 were significantly up-regulated in KO and SO diets. In summary, dietary KO and SO supplementation could improve the lipid metabolism, promote energy production for juvenile swimming crab and improve physiological process and function including molting. These findings could contribute to deepen the understanding of the physiological metabolism of dietary fatty acids for swimming crab.
机译:进行了为期8周的游泳蟹Portunus trituberculatus喂养试验,以研究不同饮食脂质来源对脂质种类,脂质代谢和线粒体能量代谢相关基因表达的影响。配制了六种等氮和等脂实验日粮,分别包含鱼油(FO),磷虾油(KO),棕榈油(PO),菜籽油(RO),大豆油(SO)和亚麻子油(LO)。将总共​​270只游泳蟹幼体(初始体重5.43±0.03 g)随机分为6种饮食,每组重复3次,每组由45只幼蟹组成。结果显示,在所有饮食中,以KO为食的蟹的肝胰腺中脂质含量最高,血清中的游离脂肪酸最高。合成代谢途径相关基因:fas和acc在KO饮食中上调。在LO饮食中,分解代谢途径相关基因hsl上调,而在KO饮食中,cpt1上调。而在螃蟹饲喂的PO和RO饲料中,与脂肪酸(fabp1和fatp4)的运输和摄取有关的基因被下调。此外,在所有日粮中,KO和SO日粮中转录因子srebp-1和hnf4α的基因表达水平最高。 FO和KO日粮的线粒体膜不饱和指数明显高于其他人。与线粒体能量代谢相关的基因,例如Atpase6,sirt1和sirt3在KO和SO日粮中显着上调。总之,日粮中添加KO和SO可以改善脂质代谢,促进幼体游泳蟹的能量产生,并改善包括蜕皮在内的生理过程和功能。这些发现可能有助于加深对游泳蟹膳食脂肪酸生理代谢的了解。

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