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首页> 外文期刊>Aquaculture >Short-term fasting increases skeletal muscle lipid content in association with enhanced mRNA levels of lipoprotein lipase 1 in lean juvenile red seabream (Pagrus major)
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Short-term fasting increases skeletal muscle lipid content in association with enhanced mRNA levels of lipoprotein lipase 1 in lean juvenile red seabream (Pagrus major)

机译:短期禁食会增加骨骼肌脂质含量,并增加瘦红鲷(Pagrus major)脂蛋白脂肪酶1的mRNA水平。

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摘要

Cultured fish are often subjected to short-term fasting for a few days prior to transport or slaughter. This intervention reduces waste and oxygen consumption during transport and improves flesh quality, but little is known about how it affects the muscle lipid content. Even less is known for wild-caught fish that are also sometimes fasted before slaughter. To investigate the effects of short-term fasting on muscle lipid content, we performed three fasting experiments using adult, lean juvenile, and fatty juvenile red seabream (Pagrus major). In the first experiment using adult specimens (performed at 20 degrees C), fasting for 10 days caused up to 2.3-, 7.8-, and 3.7-fold increases in muscle mRNA levels of lipoprotein lipase 1 (LPL1), LPL2, and peroxisome-proliferator-activated receptor gamma (PPAR.), respectively (n=6 each). These genes all participate in lipid accumulation. The second experiment was performed on 5 groups of lean juvenile red seabream [considered as wild-caught fish; 19 degrees C, n=5 each except for one group (n= 4)]. Fasting for 5 days significantly increased muscle lipid content (percentage of wet weight) and LPL1 mRNA levels up to 2.2- and 11-fold, respectively. The mRNA levels of LPL2 and PPAR. could not be determined possibly due to their low expression levels. The lipid amount (mg) in the liver decreased by 88% during fasting, whereas adipose tissue apparently disappeared after fasting for 10 days. These results suggest that lipid mobilization from liver and adipose tissue anticipated the muscular utilization of lipid, resulting in the counterintuitive increase in muscle lipid content during fasting. The third experiment was conducted on 7 groups of fatty juvenile red seabream [ considered as cultured fish; 20 degrees C, n= 5 each except for one group (n= 4)]. Fasting up to 10 days did not increase muscle lipid content or LPL1 mRNA levels. The lipid amount in the liver, but not in the adipose tissue, decreased during the experiment. Fasting for 10 days was not enough to induce active lipid mobilization when fish were well fed prior to fasting. Contrary to our expectations, regression analysis using data from juvenile specimens found a significant inverse relationship between LPL1 mRNA levels and lipid amount in the liver, which might indicate that LPL1 mRNA levels are a reflection of temporal tissue demand for lipids. Overall, these results suggest that short-term fasting for similar to 5 days increases muscle lipid content of wild-caught lean fish possibly by an LPL1-dependent lipid transport mechanism.
机译:养殖的鱼通常在运输或屠宰前需短期禁食几天。这种干预减少了运输过程中的浪费和氧气消耗,并改善了肉的品质,但人们对其如何影响肌肉脂质含量知之甚少。对野生捕捞鱼知之甚少,有时在屠宰前也会禁食。为了研究短期禁食对肌肉脂质含量的影响,我们使用成年,瘦少年和脂肪少年红鲷(Pagrus major)进行了三个禁食实验。在第一个使用成人标本(在20摄氏度下执行)的实验中,禁食10天导致脂蛋白脂肪酶1(LPL1),LPL2和过氧化物酶体的肌肉mRNA水平分别提高2.3倍,7.8倍和3.7倍。增殖物激活受体γ(PPAR。),分别(n = 6)。这些基因都参与脂质积累。第二个实验是对5组瘦少年鲷鱼进行的(被视为野生鱼类)。 19摄氏度,除一组(n = 4)外,每个n = 5]。禁食5天会显着增加肌肉脂质含量(湿重百分比)和LPL1 mRNA水平,分别高达2.2倍和11倍。 LPL2和PPAR的mRNA水平。由于它们的低表达水平,可能无法确定。禁食期间,肝脏中的脂质含量(mg)减少了88%,而禁食10天后,脂肪组织明显消失。这些结果表明,肝脏和脂肪组织中的脂质动员预示着脂质的肌肉利用,从而导致禁食期间肌肉脂质含量的反常增加。第三个实验是对7组脂肪少年红鲷鱼进行的[被视为养殖鱼; 20摄氏度,每个n = 5(一组除外)(n = 4)]。禁食10天不会增加肌肉脂质含量或LPL1 mRNA水平。在实验过程中,肝脏中而非脂肪组织中的脂质量减少了。当在禁食之前喂饱鱼时,禁食10天不足以诱导主动脂质动员。与我们的预期相反,使用来自青少年标本的数据进行的回归分析发现LPL1 mRNA水平与肝脏脂质含量之间存在显着的反比关系,这可能表明LPL1 mRNA水平反映了组织对脂质的暂时性需求。总体而言,这些结果表明,短期禁食约5天可能通过LPL1依赖性脂质转运机制增加了野生捕获的瘦鱼的肌肉脂质含量。

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