首页> 外文期刊>Aquaculture Reports >Effects of dietary methionine on growth performance and metabolism through modulating nutrient-related pathways in largemouth bass (Micropterus salmoides)
【24h】

Effects of dietary methionine on growth performance and metabolism through modulating nutrient-related pathways in largemouth bass (Micropterus salmoides)

机译:膳食蛋氨酸对碱沥青中营养相关途径(Micropterus Salmoides)的营养有关途径生长性能和代谢的影响

获取原文
获取外文期刊封面目录资料

摘要

Methionine (Met) as molecular signaling plays a vital regulatory role in growth-related cellular functions. However, more research in the regulatory mechanism of Met in fish species is needed. Therefore, this study was designed to elucidate the regulatory role of dietary Met on body growth performance and metabolism. Largemouth bass (initial body weight: 4.10?±?0.01?g) fed with control (CON, Met: 1.21 % of diet) diet and Met deficiency (MD, Met: 0.93 % of diet) diet, respectively for 8 weeks. Results of present study showed that compared with the MD diet (specific growth performance: 3.01?±?0.03 %/d; weight gain ratio: 438?±?9.16 %), control diet significantly increased the specific growth performance (3.36?±?0.02 %/d) and weight gain ratio (557?±?7.41 %), respectively ( P ?0.05). Moreover, the fish fed with control diet also had higher feed efficient ratio and protein efficiency ratio (1.12?±?0.01; 2.28?±?0.01) than the fish fed with MD diet (0.88?±?0.03; 1.83?±?0.05). Mechanically, present study demonstrated that Met supplementation increased the amino acid (AA) concentrations through improving transport efficiency of AA transporters. Elevated AA concentrations promoted systemic nutrient sensing by activating the growth hormone-insulin-like growth factor (GH-IGF) signaling pathway. Activated GH-IGF signaling then up-regulated the target of rapamycin (TOR) signaling and suppressed the amino acids response (AAR) signaling. Up-regulated TOR and down-regulated AAR caused by Met supplementation acted together to increase the nutrient metabolic level, which further accelerate the growth performance. Our study better explained how fish through nutrient sensing signaling to coordinating growth and metabolism in response to dietary Met availability.
机译:作为分子信号传导的蛋氨酸(MET)在生长相关的细胞功能中起着重要的调节作用。然而,需要在鱼类中遇见的调节机制进行更多的研究。因此,本研究旨在阐明饮食达到身体生长性能和新陈代谢的监管作用。利可茅斯(初始体重:4.10?目前研究结果表明,与MD饮食相比(特异性生长性能:3.01?±0.03%/ D;体重增加比:438?±9.16%),控制饮食显着提高了特定的生长性能(3.36?±± 0.02%/ d)分别和重量增益比(557〜±7.41%)(P& 0.05)。此外,饲喂饲料的鱼类还具有较高的饲料有效率和蛋白质效率比(1.12?±0.01; 2.28?±0.01),而不是用MD饮食(0.88?±0.03; 1.83?±0.05 )。机械地,现有的研究证明,通过提高AA转运蛋白的运输效率来增加氨基酸(AA)浓度。通过激活生长激素 - 胰岛素样生长因子(GH-IGF)信号通路,升高的AA浓度促进了全身养分感测。然后激活GH-IGF信号,然后上调雷帕霉素(TOR)信号传导的靶标并抑制氨基酸响应(AAR)信号传导。由MAT补充引起的上调疣和下调的AAR作用在一起,以增加营养代谢水平,进一步加速增长性能。我们的研究更好地解释了如何通过营养传感信号传导来协调生长和代谢的饮食达到可用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号