首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Evaluation of Optimum Dietary Threonine Requirement by Plasma Free Threonine and Ammonia Concentrations in Surgically Modified Rainbow Trout Oncorhynchus mykiss
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Evaluation of Optimum Dietary Threonine Requirement by Plasma Free Threonine and Ammonia Concentrations in Surgically Modified Rainbow Trout Oncorhynchus mykiss

机译:血浆改良苏氨酸和氨气对血浆改良苏氨酸和氨气浓度的最佳饮食苏氨酸需求的评估

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摘要

This study was carried out to evaluate the dietary threonine requirement by measuring the plasma free threonine and ammonia concentrations in rainbow trout, Oncorhynchus mykiss after dorsal aorta cannulation. A total of 70 fish (average initial weight 506±8.2 g) were randomly distributed into each of the 14 net cages (5 fish/cage). After 48 hours (h) of feed deprivation, each group was intubated at 1% body weight with one of the seven L-amino acid based diets containing graded levels of threonine (0.42%, 0.72%, 0.92%, 1.12%, 1.32%, 1.52%, or 1.82% of diet, dry matter basis). Blood samples were taken at 0, 5, and 24 h after intubation. Post-prandial plasma free threonine concentrations (PPthr) of fish 5 h after intubation with diets containing 1.32% or more threonine were significantly higher than those of fish intubated with diets containing 1.12% or less threonine (p<0.05). Post-absorptive free threonine concentrations (PAthr) after 24 h of intubation of the fish with diets containing 0.92% or more threonine were significantly higher than those of fish intubated with diets containing 0.72% or less threonine. Post-prandial plasma ammonia concentrations (PPA, 5 h after intubation) were not significantly different among fish intubated with diets containing 1.12% or less threonine, except the PPA of fish intubated with diet containing 0.42% threonine. Broken-line model analyses of PPthr, PAthr, and PPA indicated that the dietary threonine requirement of rainbow trout should be between 0.95% (2.71) and 1.07% (3.06) of diet (% of dietary protein on a dry matter basis).
机译:这项研究通过测量背主动脉插管后虹鳟(Oncorhynchus mykiss)的血浆游离苏氨酸和氨浓度来评估饮食中对苏氨酸的需求量。将总共​​70条鱼(平均初始重量506±8.2 g)随机分配到14个网箱中(每个网箱5条鱼)。禁食48小时后,每组分别以1%的体重和7种基于L-氨基酸的含苏氨酸(0.42%,0.72%,0.92%,1.12%,1.32%)的日粮插管,饮食的1.52%或1.82%(以干物质为基础)。插管后0、5和24小时采集血样。插管后5 h食用含1.32%或更高苏氨酸的鱼的餐后血浆苏氨酸浓度(PPthr)显着高于插管时食用含1.12%或更少苏氨酸的鱼的血浆中苏氨酸浓度(p <0.05)。日粮中加入苏氨酸含量为0.92%或更高的鱼,在插管后24 h的吸收后游离苏氨酸浓度(PAthr)明显高于日粮中苏氨酸含量为0.72%或更低的鱼。在饲喂含1.12%或更少苏氨酸的日粮中,餐后血浆氨浓度(PPA,插管后5小时)无显着差异,但饲喂含0.42%苏氨酸的日粮中,PPA除外。 PPthr,PAthr和PPA的折线模型分析表明,虹鳟鱼的饮食苏氨酸需求量应在饮食的0.95%(2.71)至1.07%(3.06)之间(以干物质为基础的饮食蛋白质的百分比)。

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