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Responses in Micro-Mineral Metabolism in Rainbow Trout to Change in Dietary Ingredient Composition and Inclusion of a Micro-Mineral Premix

机译:虹鳟鱼微矿物质代谢对饮食成分组成变化和微矿物质预混物的响应

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摘要

Responses in micro-mineral metabolism to changes in dietary ingredient composition and inclusion of a micro-mineral premix (Fe, Cu, Mn, Zn and Se) were studied in rainbow trout. In a 2 x 2 factorial design, triplicate groups of rainbow trout (initial weight: 20g) were fed over 12 weeks at 17°C a fishmeal-based diet (M) or a plant-ingredient based diet (V), with or without inclusion of a mineral premix. Trout fed the V vs. M diet had lower feed intake, growth, hepato-somatic index, apparent availability coefficient (AAC) of Fe, Cu, Mn and Zn and also lower whole body Se and Zn concentration, whereas whole body Fe and Cu and plasma Fe concentrations were higher. Feeding the V diet increased intestinal ferric reductase activity; at transcriptional level, hepatic hepcidin expression was down-regulated and ferroportin 1 was up-regulated. Transcription of intestinal Cu-transporting ATPases and hepatic copper transporter1 were higher in V0 compared to other groups. Among the hepatic metalo-enzyme activities assayed, only Se-dependent glutathione peroxidase was affected, being lower in V fed fish. Premix inclusion reduced the AAC of Fe, Cu and Zn; increased the whole body concentration of all micro- minerals; up-regulated hepatic hepcidin and down-regulated intestinal ferroportin 1 transcription; and reduced the transcription of Cu-transporting ATPases in the intestine. Overall, the regulation of micro-mineral metabolism in rainbow trout, especially Fe and Cu, was affected both by a change in ingredient composition and micro-mineral premix inclusion.
机译:在虹鳟鱼中研究了微量元素代谢对饮食成分组成变化和微量元素预混物(铁,铜,锰,锌和硒)的含量的响应。在2 x 2因子设计中,将三组虹鳟鱼(初始重量:20g)在17°C的12周内以鱼粉为基础的饮食(M)或植物成分为基础的饮食(V)喂养,有或没有包含矿物预混料。 V和M饲喂的鳟鱼的饲料摄入量,生长量,肝体指数,Fe,Cu,Mn和Zn的表观可用系数(AAC)较低,并且全身Se和Zn浓度较低,而整个Fe和Cu和血浆中铁的浓度较高。喂V型饮食可增加肠道铁还原酶的活性;在转录水平,肝铁调素表达下调,铁转运蛋白1上调。与其他组相比,V0中肠道铜转运ATPase和肝铜转运蛋白1的转录更高。在所测定的肝金属酶活性中,仅硒依赖性谷胱甘肽过氧化物酶受到影响,在以V为食的鱼类中较低。预混物的夹杂会降低铁,铜和锌的AAC。增加了所有微量矿物质的全身浓度;上调肝铁调素和下调肠铁转运蛋白1转录;并减少了肠道中铜转运ATP酶的转录。总体而言,虹鳟鱼,特别是铁和铜,对微量矿物质代谢的调节受成分组成和微量矿物质预混物含量变化的影响。

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