富含蛋白质、L-色氨酸、碳水化合物和油脂的日粮对幼年鲤鱼(Catla catla)生长性能、褪黑素水平、氧化应激、抗氧化剂和肠道重要消化酶的影响

Farha Yasmin, Sona Sutradhar, Arun Roy, Russel Sarkar, Sourav Mukherjee
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摘要

鱼饲料中的膳食蛋白质、色氨酸、碳水化合物和油脂含量对鱼类的生长性能、应激管理和消化生理有许多重要作用。然而,肠道褪黑激素的功能取决于食物的可获得性、食物供应的时间、每天投喂的次数、食物的质量以及鲤鱼的生长阶段,这些因素仍有待明确。本研究旨在探讨不同试验性日粮对鲤鱼幼鱼(平均体重约 50 克)生长性能、褪黑激素、肠道氧化应激及其必需抗氧化剂和重要消化酶的影响。给鱼喂七种日粮中的任何一种,即:(i) 标准日粮(SD/对照组)(含 34.99% 蛋白质、14.56% 碳水化合物、9.84% 油和 0.36% L-色氨酸);(ii) 两种蛋白质(PRD1 含 41.02% 蛋白质,PRD2 含 50.55% 蛋白质),(iii) 两种 L-色氨酸(TrpRD1 含 0.96% 色氨酸,TrpRD2 含 1.36% 色氨酸),(iv) 一种碳水化合物(CRD 含 24.62% 碳水化合物),(v) 一种富含油脂的日粮(ORD 含 14.68% 油脂),喂养 30 天。结果表明,与 SD 相比,PRDs、TrpRDs 和 CRD 的鲤鱼生长性能更好,但 ORD 的鲤鱼生长性能较差。此外,PRDs 和 TrpRDs 能刺激肠道褪黑激素,并通过提高所有研究的抗氧化剂水平来抑制氧化应激。摄入 PRDs 和 TrpRDs 后,消化酶活性也有所提高。然而,饲喂 CRD 和 ORD 组对大多数研究参数的影响较小或没有影响,消化生理机能除外。尽管如此,本研究首次报道了PRDs和TrpRDs可以调节肠道褪黑激素、氧化应激、不同的抗氧化剂和消化功效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of Protein-, L-Tryptophan-, Carbohydrate-, Oil-Rich Diets on Growth Performance, Levels of Melatonin, Oxidative Stress, Antioxidative Agents, and Vital Digestive Enzymes in the Gut of Juvenile Carp (Catla catla)
The dietary protein, tryptophan, carbohydrate, and oil content of fish feed has many vital roles in the growth performances, stress management, and digestive physiology of fish. However, in this context, the functions of gut melatonin, which depends on the availability of food, timing of food supply, frequency of feeds/day, quality of food, and growth stages of carp, still need to be clarified. The present study aimed to investigate the impact of different experimental diets on growth performances, melatonin, oxidative stress and its essential antioxidants in the gut, and vital digestive enzymes of juvenile carp, Catla catla (mean body weight ~50g). The fish were fed any one of the seven diets viz. (i) a standard diet (SD/control) (with 34.99% protein, 14.56% carbohydrate, 9.84% oil, and 0.36% L-tryptophan) (ii) two protein (PRD1 with 41.02%, and PRD2 with 50.55% protein), (iii) two L-tryptophan (TrpRD1 with 0.96%, and TrpRD2 with 1.36% tryptophan), (iv) one carbohydrate (CRD with 24.62% carbohydrate), and (v) one oil (ORD with 14.68% oil) - rich diets for 30 days. Results indicated that the growth performance was better in PRDs, TrpRDs, and CRD compared to SD but not in ORD-fed carp. Further, PRDs and TrpRDs stimulated gut melatonin and suppressed oxidative stress by enhancing all the studied antioxidant levels. Upregulated digestive enzyme activities were also recorded after the PRDs and TrpRDs supply. However, CRD and ORD-fed groups exhibit less/no impact on most studied parameters, except digestive physiology. Nonetheless, the current study reports for the first time that PRDs and TrpRDs can modulate gut melatonin, oxidative stress, different antioxidants, and digestive efficacy.
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