Wuxi Fisheries College, Nanjing Agricultural University, Wuxi, 21408, Jiangsu, China.
Key Laboratory of Integrated Rice-Fish Farming Ecology, Ministry of Agriculture and Rural Affairs, Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Wuxi, 214081, China.
Fish Physiol Biochem. 2024 Feb;50(1):349-365. doi: 10.1007/s10695-022-01138-5. Epub 2022 Nov 11.
The purpose of this study was aimed to determine the appropriate level of dietary phenylalanine and explored the influences of phenylalanine on target rapamycin (TOR) signaling and glucose and lipid metabolism in largemouth bass. Six isonitrogenous/isoenergetic diets with graded phenylalanine levels (1.45% (control group), 1.69%, 1.98%, 2.21%, 2.48%, and 2.76%) were designed. Experimental feed was used to feed juvenile largemouth bass (initial body weight 19.5 ± 0.98 g) for 8 weeks. The final body weight, specific growth rate (SGR), feed efficiency ratio (FER), and weight gain (WG) reached their highest values in the 1.98% dietary phenylalanine group and then declined with increasing phenylalanine addition. No significant difference was found in the whole-body composition of largemouth bass between different dietary phenylalanine groups. Compared with the control group, 1.69% dietary phenylalanine significantly reduced the contents of plasma glucose (GLU) and total protein (TP), and total cholesterol (TC) contents increased significantly in the 1.98% dietary phenylalanine group (P < 0.05). The key gene expressions of TOR signaling pathway and lipid metabolism was significantly inhibited by 2.21% dietary phenylalanine (P < 0.05). The 1.98% dietary phenylalanine group showed significantly increased expression of genes related to insulin signaling pathway and factors involved in fatty acid synthesis (P < 0.05). Furthermore, 2.76% dietary phenylalanine group inhibited glucose metabolism by lowering the key gene expressions of glucose metabolism (P < 0.05). According to quadratic regression analyses based on the WG and FER, the appropriate level of dietary phenylalanine for largemouth bass were 2.00% and 2.02% of the diet (4.23% and 4.27% dietary protein), respectively, with a constant amount of tyrosine (1.33%). Hence, the total aromatic amino acid requirements were 3.33% and 3.35% of the diet (equivalent to 7.03% and 7.09% of the protein content), which may provide a theoretical basis for the development of largemouth bass feed formulas. Therefore, the growth and metabolism of largemouth bass could be promoted by controlling the content of phenylalanine in the diet, or the imbalance of phenylalanine can form a specific pathological model.
本研究旨在确定适宜的膳食苯丙氨酸水平,并探讨苯丙氨酸对大口黑鲈靶标雷帕霉素(TOR)信号和葡萄糖及脂质代谢的影响。设计了 6 种等氮/等能、梯度苯丙氨酸水平(1.45%(对照组)、1.69%、1.98%、2.21%、2.48%和 2.76%)的饲料。用实验饲料投喂初始体重为 19.5±0.98g 的幼龄大口黑鲈 8 周。在 1.98%饲粮苯丙氨酸组,终体重、特定生长率(SGR)、饲料效率比(FER)和增重(WG)达到最高值,随后随着苯丙氨酸添加量的增加而下降。不同饲粮苯丙氨酸组大口黑鲈的体组成无显著差异。与对照组相比,1.69%饲粮苯丙氨酸显著降低了血浆葡萄糖(GLU)和总蛋白(TP)含量,1.98%饲粮苯丙氨酸组总胆固醇(TC)含量显著升高(P<0.05)。TOR 信号通路和脂质代谢的关键基因表达被 2.21%饲粮苯丙氨酸显著抑制(P<0.05)。1.98%饲粮苯丙氨酸组胰岛素信号通路相关基因和脂肪酸合成相关因子的表达显著增加(P<0.05)。此外,2.76%饲粮苯丙氨酸组通过降低糖代谢关键基因的表达抑制了葡萄糖代谢(P<0.05)。根据 WG 和 FER 的二次回归分析,大口黑鲈适宜的饲粮苯丙氨酸水平分别为饲粮的 2.00%和 2.02%(相当于饲粮蛋白的 4.23%和 4.27%),酪氨酸的添加量为 1.33%。因此,总芳香族氨基酸的需求量分别为饲粮的 3.33%和 3.35%(相当于蛋白质含量的 7.03%和 7.09%),可为大口黑鲈饲料配方的开发提供理论依据。因此,通过控制饲粮苯丙氨酸含量可以促进大口黑鲈的生长和代谢,或者苯丙氨酸的不平衡可以形成特定的病理模型。