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雏鸡日粮中精氨酸、蛋氨酸和赖氨酸之间的相互关系。

Dietary interrelationships among arginine, methionine, and lysine in young broiler chicks.

作者信息

Chamruspollert M, Pesti G M, Bakalli R I

机构信息

Department of Poultry Science, The University of Georgia, Athens, Georgia, 30602-2772, USA.

出版信息

Br J Nutr. 2002 Dec;88(6):655-60. doi: 10.1079/BJN2002732.

Abstract

Since excess dietary lysine (Lys) can increase the chick's arginine (Arg) requirement and excess Arg can increase the chick's methionine (Met) requirement, experiments were conducted to test the hypothesis that responses to dietary Lys and Met are also interrelated. Day-old Ross x Ross chicks were fed a maize-soyabean meal-based diet supplemented with four levels of L-Arg (0, 5, 10 or 20 g/kg), factorially arranged with four levels of supplemental DL-Met (0, 1, 2 or 3 g/kg). Three replicate pens of ten chicks each were randomly assigned to each treatment and fed for 14 d. An increase in Arg in the diet caused growth and feed-intake depression (P=0.0001), but increasing Met in the diet enhanced growth and feed intake (P=0.0001). Arg toxicity was dependent on the Met level of the diet (Arg x Met interaction; P=0.0153). Experiment 2 was conducted to study interrelationships among Arg, Met, and Lys. Eight treatments were factorially combined: two levels of supplemental L-Arg (0 or 10 g/kg), two levels of supplemental DL-Met (0 or 2 g/kg), and two levels of supplemental L-Lys (0 or 6 g/kg). Six replicate pens of eight chicks per treatment were used. A three-way interaction among Arg, Met, and Lys was observed for body-weight gain and feed intake (P<0.023). As expected, kidney arginase activity increased as dietary Lys increased (P=0.0004). No interactions were found for kidney arginase activity. Muscle creatine increased when chicks were fed the higher Arg (25.2 g/kg) diet (P=0.0047). A three-way interaction among Arg, Met, and Lys was found for muscle creatine (P=0.0075). Excess dietary Lys depressed muscle creatinine concentration, but only in the presence of the lower concentrations of Arg and Met. To conclude, an interrelationship among Arg, Met, and Lys was demonstrated, and it was probably related to creatine biosynthesis.

摘要

由于过量的膳食赖氨酸(Lys)会增加雏鸡对精氨酸(Arg)的需求,而过量的精氨酸会增加雏鸡对蛋氨酸(Met)的需求,因此进行了实验以检验对膳食赖氨酸和蛋氨酸的反应也相互关联这一假设。将1日龄的罗斯×罗斯雏鸡饲喂以玉米-豆粕为基础的日粮,并补充四种水平的L-精氨酸(0、5、10或20 g/kg),与四种水平的补充DL-蛋氨酸(0、1、2或3 g/kg)进行析因排列。每个处理随机分配三个重复栏,每个栏中有十只雏鸡,并饲喂14天。日粮中精氨酸的增加导致生长和采食量下降(P = 0.0001),但日粮中蛋氨酸的增加促进了生长和采食量(P = 0.0001)。精氨酸毒性取决于日粮的蛋氨酸水平(精氨酸×蛋氨酸相互作用;P = 0.0153)。进行实验2以研究精氨酸、蛋氨酸和赖氨酸之间的相互关系。八种处理进行析因组合:两种水平的补充L-精氨酸(0或10 g/kg)、两种水平的补充DL-蛋氨酸(0或2 g/kg)和两种水平的补充L-赖氨酸(0或6 g/kg)。每个处理使用六个重复栏,每个栏中有八只雏鸡。观察到精氨酸、蛋氨酸和赖氨酸之间对体重增加和采食量存在三向相互作用(P<0.023)。正如预期的那样,肾脏精氨酸酶活性随着日粮赖氨酸的增加而增加(P = 0.0004)。未发现肾脏精氨酸酶活性存在相互作用。当雏鸡饲喂较高精氨酸(25.2 g/kg)日粮时,肌肉肌酸增加(P = 0.0047)。在肌肉肌酸方面发现精氨酸、蛋氨酸和赖氨酸之间存在三向相互作用(P = 0.0075)。过量的膳食赖氨酸会降低肌肉肌酐浓度,但仅在精氨酸和蛋氨酸浓度较低的情况下。总之,证明了精氨酸、蛋氨酸和赖氨酸之间存在相互关系,并且可能与肌酸生物合成有关。

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