首页> 外文期刊>International Journal of Molecular Sciences >Interactive Effects of Dietary Lipid and Phenotypic Feed Efficiency on the Expression of Nuclear and Mitochondrial Genes Involved in the Mitochondrial Electron Transport Chain in Rainbow Trout
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Interactive Effects of Dietary Lipid and Phenotypic Feed Efficiency on the Expression of Nuclear and Mitochondrial Genes Involved in the Mitochondrial Electron Transport Chain in Rainbow Trout

机译:饮食脂质和表型饲料效率对虹鳟线粒体电子转运链中涉及的核和线粒体基因表达的相互作用的影响

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A 2 × 3 factorial study was conducted to evaluate the effects of dietary lipid level on the expression of mitochondrial and nuclear genes involved in electron transport chain in all-female rainbow trout Oncorhynchus mykiss. Three practical diets with a fixed crude protein content of 40%, formulated to contain 10% (40/10), 20% (40/20) and 30% (40/30) dietary lipid, were fed to apparent satiety to triplicate groups of either low-feed efficient (F120; 217.66 ± 2.24 g initial average mass) or high-feed efficient (F136; 205.47 ± 1.27 g) full-sib families of fish, twice per day, for 90 days. At the end of the experiment, the results showed that there is an interactive effect of the dietary lipid levels and the phenotypic feed efficiency (growth rate and feed efficiency) on the expression of the mitochondrial genes nd1 (NADH dehydrogenase subunit 1), cytb (Cytochrome b), cox1 (Cytochrome c oxidase subunits 1), cox2 (Cytochrome c oxidase subunits 2) and atp6 (ATP synthase subunit 6) and nuclear genes ucp2α (uncoupling proteins 2 alpha), ucp2β (uncoupling proteins 2 beta), pparα (peroxisome proliferator-activated receptor alpha), pparβ (peroxisome proliferatoractivated receptor beta) and ppargc1α (proliferator-activated receptor gamma coactivator 1 alpha) in fish liver, intestine and muscle, except on ppargc1α in the muscle which was affected by the diet and the family separately. Also, the results revealed that the expression of mitochondrial genes is associated with that of nuclear genes involved in electron transport chain in fish liver, intestine and muscle. Furthermore, this work showed that the expression of mitochondrial genes parallels with the expression of genes encoding uncoupling proteins (UCP) in the liver and the intestine of rainbow trout. This study for the first time presents the molecular basis of the effects of dietary lipid level on mitochondrial and nuclear genes involved in mitochondrial electron transport chain in fish.
机译:进行了2×3因子分析,以评估饮食脂质水平对全雌性虹鳟Oncorhynchus mykiss的电子传递链中线粒体和核基因表达的影响。将三份固定蛋白含量固定为40%,包含10%(40/10),20%(40/20)和30%(40/30)饮食脂质的实用饮食喂食至明显的三组低饲料效率(F120; 217.66±2.24 g初始平均质量)或高饲料效率(F136; 205.47±1.27 g)全同胞鱼,每天两次,连续90天。在实验结束时,结果表明,饮食脂质水平和表型饲料效率(生长率和饲料效率)对线粒体基因nd1(NADH脱氢酶亚基1)cytb(细胞色素b),cox1(细胞色素c氧化酶亚基1),cox2(细胞色素c氧化酶亚基2)和atp6(ATP合酶亚基6)和核基因ucp2α(解偶联蛋白2 alpha),ucp2β(解偶联蛋白2 beta),pparα(鱼肝,肠和肌肉中过氧化物酶体增殖物激活受体α),pparβ(过氧化物酶体增殖物激活受体β)和ppargc1α(增殖物激活受体γ辅激活物1α),但受饮食和家庭影响的肌肉中的ppargc1α除外分别。结果还表明,线粒体基因的表达与鱼肝,肠和肌肉中电子传递链中涉及的核基因的表达相关。此外,这项工作表明线粒体基因的表达与虹鳟鱼肝脏和肠道中编码解偶联蛋白(UCP)的基因表达平行。这项研究首次提出了饮食脂质水平对鱼类线粒体和核基因的影响的分子基础。

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