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首页> 外文期刊>Journal of Animal Science >Effects of copper hydroxychloride on growth performance and abundance of genes involved in lipid metabolism of growing pigs
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Effects of copper hydroxychloride on growth performance and abundance of genes involved in lipid metabolism of growing pigs

机译:硫基氯化铜对生长猪脂代谢的生长性能和丰富基因的影响

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摘要

An experiment was conducted to test the hypothesis that copper (Cu) hydroxychloride improves growth performance by upregulating the mRNA transcription of genes involved in lipid metabolism of pigs fed a diet based on corn, soybean meal (SBM), and distillers dried grains with solubles (DDGS). Thirty-two pigs (15.05 +/- 0.98 kg) were allotted to 2 dietary treatments with 2 pigs per pen for a total of 8 replicate pens per treatment. Pigs were fed a corn-SBM-DDGS control diet that included Cu to meet the requirement. A second diet was formulated by adding 150 mg Cu/kg from copper hydroxychloride to the control diet. On the last day of the experiment, one pig per pen was sacrificed, and samples from liver, skeletal muscle, and subcutaneous adipose tissue were collected to analyze relative mRNA abundance of genes involved in lipid metabolism. Results indicated that overall ADG and G:F were greater (P < 0.05) for pigs fed the diet containing copper hydroxychloride compared with pigs fed the control diet. Pigs fed the diet supplemented with copper hydroxychloride also had increased (P < 0.05) abundance of cluster of differentiation 36 in the liver and increased (P < 0.05) abundance of fatty acid-binding protein 4 and lipoprotein lipase in subcutaneous adipose tissue. Inclusion of copper hydroxychloride also tended to increase (P < 0.10) the abundance of fatty acid-binding protein 1, peroxisome proliferator-activated receptor a, and carnitine palmitoyltransferase 1B in the liver, skeletal muscle, and subcutaneous adipose tissue, respectively. This indicates that dietary Cu may affect signaling pathways associated with lipid metabolism by improving the uptake, transport, and utilization of fatty acids. In conclusion, supplementation of copper hydroxychloride to the control diet improved growth performance and upregulated the abundance of some genes involved in postabsorptive metabolism of lipids.
机译:进行实验以测试假设:通过上调饲料饲料饲料脂肪代谢的基因的mRNA转录来改善生长性能的假设,以基于玉米,大豆膳食(SBM)和酿酒渣用可溶物干燥籽粒( DDGS)。分配了32只猪(15.05 +/- 0.98千克),分配给2只猪的膳食治疗,每支猪2只猪,每次治疗总共8张复制钢笔。猪喂养玉米-SBM-DDGS控制饮食,包括CU以满足要求。通过将150mg / kg从硫基氯化铜加入对照饮食来配制第二饮食。在实验的最后一天,牺牲了每张笔的一只猪,收集来自肝脏,骨骼肌和皮下脂肪组织的样品,以分析参与脂质代谢的相对mRNA丰富基因。结果表明,与喂食控制饮食的猪相比,饲喂含铜氧化铜的猪的猪更大(P <0.05)更大(P <0.05)。饲喂氢氧化铜的饮食的猪也增加了(P <0.05)肝脏的分化簇36,并且在皮下脂肪组织中增加(P <0.05)脂肪酸结合蛋白4和脂蛋白脂肪酶。将羟基氯化铜的包含也倾向于增加(p <0.10)肝脏,骨骼肌和皮下脂肪组织中的脂肪酸结合蛋白1,过氧化物增殖剂活化受体A和肉毒氨基棕榈酰转移酶1B的富含量(p <0.10)。这表明通过改善脂肪酸的摄取,运输和利用,膳食Cu可能影响与脂质代谢相关的信号通路。总之,补充羟基氯化铜对控制饮食改善的生长性能,并上调了脂质清醒代谢参与的一些基因的丰富。

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