首页> 外文期刊>The British Journal of Nutrition >Dietary zinc addition influenced zinc and lipid deposition in the fore- and mid-intestine of juvenile yellow catfish Pelteobagrus fulvidraco
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Dietary zinc addition influenced zinc and lipid deposition in the fore- and mid-intestine of juvenile yellow catfish Pelteobagrus fulvidraco

机译:膳食锌加成少年黄鲶绒毛膜中肠道和中肠中的锌和脂质沉积影响

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摘要

The present study explored the mechanisms of dietary Zn influencing Zn and lipid deposition in the fore- and mid- intestine in yellow catfish Pelteobagrus fulvidraco, and investigated whether the mechanism was intestinal-region dependent. For this purpose, yellow catfish were fed three diets containing Zn levels of 8·83, 19·20 and 146·65 mg Zn/kg, respectively. Growth performance, intestinal TAG and Zn contents as well as activities and mRNA expression of enzymes and genes involved in Zn transport and lipid metabolism in the fore- and mid-intestine were analysed. Dietary Zn increased Zn accumulation as well as activities of Cu-, Zn-superoxide dismutase and ATPase in the fore- and mid-intestine. In the fore-intestine, dietary Zn up-regulated mRNA levels of ZnT1, ZnT5, ZnT7, metallothionein (MT) and metal response element-binding transcription factor-1 (MTF-1), but down-regulated mRNA levels of ZIP4 and ZIP5. In the mid-intestine, dietary Zn up-regulated mRNA levels of ZnT1, ZnT5, ZnT7, MT and MTF-1, but down-regulated mRNA levels of ZIP4 and ZIP5. Dietary Zn reduced TAG content, down-regulated activities of 6-phosphogluconate dehydrogenase (6PGD), glucose-6-phosphate dehydrogenase (G6PD), malic enzyme (ME) and fatty acid synthase (FAS) activities, and reduced mRNA levels of 6PGD, G6PD, FAS, PPARγ and sterol-regulator element-binding protein (SREBP-1), but up-regulated mRNA levels of carnitine palmitoyltransferase IA, hormone-sensitive lipase (HSLa), adipose TAG lipase (ATGL) and PPARα in the fore-intestine. In the mid-intestine, dietary Zn reduced TAG content, activities of G6PD, ME, isocitrate dehydrogenase and FAS, down-regulated mRNA levels of 6PGD, G6PD, FAS, acetyl-CoA carboxylase a, PPARγ and SREBP-1, but up-regulated mRNA expression of HSLa, ATGL and PPARγ. The reduction in TAG content following Zn addition was attributable to reduced lipogenesis and increased lipolysis, and similar regulatory mechanisms were observed between the fore- and mid-intestine.
机译:本研究探讨了在黄色鲶鱼植物植物中的肠道中和中肠中的膳食Zn和脂质沉积的机制,并研究了该机制是否依赖于肠区。为此目的,黄色鲶鱼分别喂养含有8·83,19·20和146·65mg Zn / kg的Zn水平的三种饮食。分析了生长性能,肠标签和Zn含量以及参与在前肠中Zn转运和脂质代谢的酶和基因的活性和mRNA表达。膳食Zn增加Zn累积以及前肠中Cu-,Zn-超氧化物歧化酶和ATP酶的活性。在前肠,膳食Zn上调mRNA水平的ZnT1,ZnT5,ZnT7,金属抑制蛋白(MT)和金属响应元件结合转录因子-1(MTF-1),但下调MRNA水平的ZIP4和ZIP5 。在中肠中,膳食Zn上调mRNA水平的ZnT1,ZnT5,ZnT7,MT和MTF-1,但下调的ZIP4和Zip5的mRNA水平。膳食Zn减少标签含量,6-磷光葡萄糖酸脱氢酶(6pgd),葡萄糖-6-磷酸脱氢酶(G6PD),苹果酵母(ME)和脂肪酸合成酶(FAS)活性的降低调节的活性,以及​​降低6pgd的mRNA水平, G6PD,Fas,PPARγ和甾醇 - 稳压剂元素结合蛋白(Srebp-1),但上调肉毒酰棕榈酰转移酶Ia,激素敏感脂肪酶(HSLA),脂肪标签脂肪酶(ATG1)和PPARα中肠。在中肠中,膳食Zn减少标签含量,G6PD,乙烯脱氢酶和FAS的活性,下调mRNA水平6pgd,G6Pd,Fas,乙酰-CoA羧基酶A,PPARγ和Srebp-1,但上调 - 调节HSLA,ATGL和PPARγ的mRNA表达。 Zn添加后标签含量的减少可归因于降低脂肪生成和增加的脂解,在前肠和中肠之间观察到类似的调节机制。

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