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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Nutritional physiology of mahi-mahi (Coryphaena hippurus): Postprandial metabolic response to different diets and metabolic impacts on swim performance
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Nutritional physiology of mahi-mahi (Coryphaena hippurus): Postprandial metabolic response to different diets and metabolic impacts on swim performance

机译:Mahi-Mahi的营养生理(Coryphaena Hippurus):对不同饮食和游泳表现的代谢影响的餐后代谢反应

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Migratory pelagic fish species, such as the mahi-mahi (Coryphaena hippurus), must balance numerous metabolic demands simultaneously in order to survive in a challenging oceanic environment. Energetic support for such demands comes from a variety of natural prey items in the wild and can come from manufactured pelletized feed in captivity. This study quantified postprandial metabolism, commonly referred to as specific dynamic action (SDA), over time in adult mahi-mahi (706 +/- 25 g; 38 +/- 0.7 cm FL) in response to satiation feeding using three different natural and manufactured diets. Results indicate that during satiation feeding the amount of food ingested is dictated by energy content rather than prey mass, regardless of moisture content of the diet. Ingested meal energy did not differ significantly across groups (473 +/- 45 kJ), nor did the duration of SDA (36 +/- 2.1 h). Satiation feeding levels ranged from 2.9-16.2% bodyweight depending on the diet. Peak SDA and SDA magnitude were both significantly decreased in response to dry pelletized diet compared to the natural forage diets, despite equivalent energy consumption. Swim performance and maximum metabolic rate were not impacted significantly in satiation fed fish compared to unfed fish, supporting the evidence that mahi-mahi are able to maintain multiple metabolic demands at one time without compromising performance.
机译:迁徙的皮布拉格鱼种,如Mahi-Mahi(Coryphaena Hippurus),必须同时平衡许多代谢需求,以便在挑战性海洋环境中存活。对这种需求的精力充沛的支持来自野外的各种天然猎物,可以来自囚禁的制造颗粒化饲料。本研究量化了餐后代谢,通常称为特定的动态动作(SDA),随着使用三种不同自然的饱和喂养的成人Mahi-Mahi(706 +/- 25g; 38 +/- 0.7cm fl)随着时间的推移。制造的饮食。结果表明,在喂养的饱食过程中,食物的量由能量含量而不是牺牲品的捕食量决定。群体(473 +/- 45 kJ)中摄入的膳食能量没有显着差异,也没有SDA的持续时间(36 +/- 2.1小时)。根据饮食,良好的喂养水平为2.9-16.2%的体重。尽管能量消耗等效,持昔时相对于天然饲料饮食,峰值SDA和SDA幅度均显着降低。与不断的鱼类相比,游泳表现和最大代谢率不会显着影响到饱满的鱼类,支持Mahi-Mahi能够一次保持多种代谢需求的证据,而不会损害性能。

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