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重新评估改良尼罗罗非鱼品系的膳食蛋氨酸需求()。 (原文括号部分内容缺失,翻译时保留原样)

Revaluating the dietary methionine requirements in an improved strain of nile tilapia ().

作者信息

Yossa Rodrigue, Fatan Nurulhuda Ahmad, Palanivelu Kirthigah

机构信息

Sustainable Aquaculture, WorldFish, Jalan Batu Maung, Batu Maung, 11960 Bayan Lepas, Penang, Malaysia.

出版信息

Heliyon. 2023 Mar 7;9(3):e14376. doi: 10.1016/j.heliyon.2023.e14376. eCollection 2023 Mar.

Abstract

It has been shown with terrestrial animals that the genetic improvement increases the nutrient requirements of the animal, which becomes more efficient in using these nutrients to achieve their higher growth potential. This study was conducted to estimate the dietary methionine requirements of different generations of the Genetically Improved Farmed Tilapia (GIFT) strain of Nile tilapia at the juvenile stage (17.51 g-19.55 g initial body weight). To achieve this objective, a completely randomized 2 × 6 factorial design was applied, with the genetic background of fish (generation) as the first independent variable with two levels, the 16th and 17th generations, and the methionine content of the diet as the second independent variable, with 6 graded levels, 0.52, 0.62, 0.84, 0.94, 1.04 and 1.27% of methionine in the diets, respectively. At the end of the 42-day experiment, the interaction effect of the generation × diet was not significant (P > 0.05) for any of the response parameters studied. The genetic improvement led to 15% more growth in the 17th generation than the 16th generation of the GIFT strain of Nile tilapia, which was accompanied with better feed conversion ratio, protein productive value, and energy productive value in the former generation (P < 0.05). Whatever the generation considered, the optimum dietary methionine requirement for the growth of the improved GIFT strain of Nile tilapia was estimated in this study, using the broken-line model, between 0.75% and 0.80% of the diet (with a cysteine level of 0.50% of the diet), which is higher than 0.49% of the diet previously estimated for conventional Nile tilapia at the juvenile stage. Therefore, the genetic improvement applied to the GIFT strain of Nile tilapia likely led to a higher methionine and total sulfur amino acid requirement than the conventional strains. The results of this study support the need to update the existing nutrient requirement databases of fish, in order to ensure that diets are formulated to effectively satisfy the requirements of not only conventional, but also improved strains of fish, for the full expression of their accrued growth potential of the latter strains.

摘要

陆地动物实验表明,基因改良会增加动物的营养需求,而动物在利用这些营养以实现更高生长潜力方面会变得更高效。本研究旨在估计尼罗罗非鱼遗传改良养殖品系(GIFT)不同世代幼鱼阶段(初始体重17.51 g - 19.55 g)的日粮蛋氨酸需求量。为实现这一目标,采用了完全随机的2×6析因设计,以鱼类的遗传背景(世代)作为第一个自变量,有两个水平,即第16代和第17代,日粮蛋氨酸含量作为第二个自变量,有6个梯度水平,日粮中蛋氨酸含量分别为0.52%、0.62%、0.84%、0.94%、1.04%和1.27%。在为期42天的实验结束时,对于所研究的任何响应参数,世代×日粮的交互作用均不显著(P>0.05)。基因改良使尼罗罗非鱼GIFT品系的第17代比第16代生长速度提高了15%,且前一代具有更好的饲料转化率、蛋白质生产价值和能量生产价值(P<0.05)。无论考虑哪一代,本研究使用折线模型估计,改良的尼罗罗非鱼GIFT品系生长的最佳日粮蛋氨酸需求量在日粮的0.75%至0.80%之间(日粮中半胱氨酸水平为0.50%),这高于先前估计的常规尼罗罗非鱼幼鱼阶段日粮的0.49%。因此,应用于尼罗罗非鱼GIFT品系的基因改良可能导致比常规品系更高的蛋氨酸和总含硫氨基酸需求量。本研究结果支持更新现有的鱼类营养需求数据库的必要性,以确保日粮配方不仅能有效满足常规鱼类,也能满足改良鱼类品系的需求,使后者品系的累积生长潜力得到充分发挥。

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Editorial: Nutritional requirements in production animals.社论:生产动物的营养需求
Front Vet Sci. 2023 Feb 7;10:1138636. doi: 10.3389/fvets.2023.1138636. eCollection 2023.
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Amino acid requirements for growth of Nile tilapia.尼罗罗非鱼生长所需的氨基酸
J Nutr. 1988 Dec;118(12):1540-6. doi: 10.1093/jn/118.12.1540.

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