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首页> 外文期刊>Archives of Animal Nutrition >Effects of dietary energy intake and cold exposure on kinetics of plasma phenylalanine, tyrosine and protein synthesis in sheep
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Effects of dietary energy intake and cold exposure on kinetics of plasma phenylalanine, tyrosine and protein synthesis in sheep

机译:日粮能量摄入和冷暴露对绵羊血浆苯丙氨酸,酪氨酸和蛋白质合成动力学的影响

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An isotope dilution method of [2H5]phenylalanine (Phe) and [2H2]tyrosine (Tyr) was used to determine the effects of metabolisable energy (ME) intake and cold exposure on plasma Phe and Tyr turnover rates in sheep. Whole body protein synthesis (WBPS) was calculated with the [2H5]Phe model. Eight adult sheep were assigned to two dietary treatments receiving the same amount of crude protein and either 515 or 828 kJ · kg BW−0.75 · d−1 of ME (Me-ME diet and Hi-ME diet, respectively) with a crossover design for two 28 d periods. The sheep were exposed from a thermoneutral environment (23 ± 1°C) to a cold environment (2 ± 1 to 4 ± 1°C) for 6 d for each dietary treatment. The primed-continuous infusion method of isotope dilution was conducted in both environmental temperatures. Plasma Phe turnover rate (PheTR) tended to be greater and plasma Tyr turnover rate (TyrTR) was greater (p = 0.03) for the Hi-ME diet compared with the Me-ME diet. Plasma PheTR increased (p = 0.04) and plasma TyrTR tended to increase during cold exposure. Whole body protein synthesis tended to be greater for the Hi-ME diet compared with the Me-ME diet and increased (p = 0.03) during cold exposure compared to the thermoneutral environment, but no interaction was detected. It was concluded that in sheep, plasma PheTR and WBPS (as determined by the [2H5]Phe model) tended to be influenced by and plasma TyrTR was influenced by ME intake. Further, plasma PheTR and WBPS increased and plasma TyrTR tended to increase during cold exposure.
机译:[ 2 H 5 ]苯丙氨酸(Phe)和[ 2 H 2 ]酪氨酸( Tyr)用于确定代谢能(ME)摄入量和冷暴露对绵羊血浆Phe和Tyr周转率的影响。用[ 2 H 5 ] Phe模型计算全身蛋白质合成(WBPS)。八只成年绵羊被分配到两种饮食治疗中,这些饮食接受相同量的粗蛋白和515或828 kJ·kg BW ˆ0.75 ··d â1 ME(分别为Me-ME饮食和Hi-ME饮食),采用交叉设计,持续两个28 d。每种饮食治疗将绵羊从热中性环境(23±1°C)暴露于寒冷环境(2±1至4±1°C)暴露6 d。在两种环境温度下均进行了同位素稀释的灌注连续注入法。血浆苯丙氨酸周转率(PheTR)趋于更大,血浆Tyr周转率(TyrTR)较大(p = 0.03)的Hi-ME饮食与Me-ME饮食相比。血浆PheTR增加(p = 0.04)和血浆TyrTR倾向于在冷暴露期间增加。全身蛋白质合成倾向于高ME饮食与Me-ME饮食相比,并增加(p = 0.03)在冷暴露期间与热中性环境相比,但未检测到相互作用。结论是,绵羊的血浆PheTR和WBPS(由[ 2 H 5 ] Phe模型确定)倾向于受ME的影响,血浆TyrTR受ME的影响录取。此外,冷暴露期间血浆PheTR和WBPS增加,血浆TyrTR倾向于增加。

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