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碳水化合物摄入对草鱼(Ctenopharyngodon idella)摄食和食欲的反馈调节。

The feedback regulation of carbohydrates intake on food intake and appetite in grass carp (Ctenopharyngodon idella).

机构信息

College of Fisheries, Chinese Perch Research Center, Huazhong Agricultural University, No.1, Shizishan Street, Hongshan District, Wuhan, 430070, Hubei Province, China.

Innovation Base for Chinese Perch Breeding, Key Lab of Freshwater Animal Breeding, Ministry of Agriculture, Wuhan, 430070, China.

出版信息

Fish Physiol Biochem. 2021 Oct;47(5):1395-1403. doi: 10.1007/s10695-020-00914-5. Epub 2021 Jul 20.

Abstract

Improving carbohydrate utilization can contribute to sustainability of aquaculture. In order to explore the feedback mechanism of glucose homeostasis in fish, one control diet (25% carbohydrate and 40% protein), one relatively high carbohydrate diet named HG (42% carbohydrate and 40% protein), and one high dietary carbohydrate coupled with relatively low protein diet named HGP (42% carbohydrate and 25% protein) were fed to grass carp for 40 days. After the feeding trial, HG group impeded the food intake and growth performance of fish compared with the other two groups. Meanwhile, the serum glucose and insulin level were both significantly elevated under the condition of high carbohydrates intake when compared HG with control group. However, although no significant difference was observed in peripheral glucose or insulin between HG and HGP groups, fish fed with HGP diet increased growth performance and food intake compared with the HG group. Gene expression data indicated that fish selectively regulated the expressions of the cerebral anorexigenic genes (cart and pomc) to adapt to the HG and HGP intake. Therefore, the HGP diet with high carbohydrate and low protein was more suitable for grass carp feeding and growth when compared with the other two diets, possibly because the diet composition was closer to the natural food of this fish. In addition, the serum leptin level was highly consistent with changes in food intake and anorexigenic gene expressions when comparing the three experimental diets, indicating that leptin might be the key to mediate the feedback regulation of carbohydrates intake on food intake and appetite in fish.

摘要

提高碳水化合物的利用率有助于水产养殖的可持续发展。为了探索鱼类葡萄糖稳态的反馈机制,我们给草鱼投喂了三种饲料:一种对照饲料(25%碳水化合物和 40%蛋白质),一种高碳水化合物饲料(HG,42%碳水化合物和 40%蛋白质),一种高碳水化合物和低蛋白质饲料(HGP,42%碳水化合物和 25%蛋白质),为期 40 天。在喂养试验结束后,HG 组与其他两组相比,阻碍了草鱼的摄食和生长性能。同时,与对照组相比,HG 组在高碳水化合物摄入的情况下,血清葡萄糖和胰岛素水平均显著升高。然而,尽管 HG 组和 HGP 组之间在血糖或胰岛素的外周水平上没有观察到显著差异,但与 HG 组相比,摄食 HGP 饲料的草鱼生长性能和摄食量增加。基因表达数据表明,草鱼选择性地调节了脑厌食基因(cart 和 pomc)的表达,以适应 HG 和 HGP 的摄入。因此,与其他两种饲料相比,高碳水化合物和低蛋白质的 HGP 饲料更适合草鱼的喂养和生长,可能是因为该饲料组成更接近这种鱼类的天然食物。此外,当比较三种实验饲料时,血清瘦素水平与摄食和厌食基因表达的变化高度一致,表明瘦素可能是调节鱼类碳水化合物摄入对摄食和食欲的反馈调节的关键。

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