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Potential role of N-carbamoyl glutamate in biosynthesis of arginine and its significance in production of ruminant animals

机译:N-氨基甲酰基谷氨酸在精氨酸生物合成中的潜在作用及其在反刍动物生产中的意义

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摘要

Arginine (ARG) exerts many beneficial effects on animal body and enhanced angiogenesis, lactogenesis, which finally leads to the improvement in nitrogen (N) metabolism, reproduction, lactation, immunity and growth. Unfortunately, unprotected ARG will be degraded in the rumen and its price is high, thus feeding rumen-protected ARG seems to be uneconomical. Alternatively, N-carbamoyl glutamate (NCG) is structural analogue of N-acetyl glutamate, cofactor of cabamoyl phosphate synthetase1, is lower in rumen degradation compared to ARG. Additionally, rumen epithelial and duodenal cells have potentially utilized the NCG for ureagenesis. Supplementation of NCG to high yielding dairy cows increased plasma concentration of ARG and nitric oxide, decreased the plasma ammonia N and improved lactation performance and N utilization. Supplementation of NCG enhanced pregnancy rates in rats, improved litter size and fetal survival rate, thereby improved the reproductive performance of sows. Oral NCG supplementation increases plasma ARG and somatotropin levels, and increased growth rate and muscle protein synthesis in nursing piglets. The NCG is potential a relatively cheaper source of feed additive to offer vital compensation over oral administration of ARG, resulting in improved ruminant animal health and production. In this article, we reviewed the mechanism of ARG biosynthesis by NCG and their significance in growth, reproduction, milk production and N utilization in ruminant animals.
机译:精氨酸(ARG)对动物身体具有许多有益的作用,并增强了血管生成,泌乳作用,最终导致了氮(N)代谢,繁殖,泌乳,免疫和生长的改善。不幸的是,未保护的ARG会在瘤胃中降解,价格很高,因此饲喂受瘤胃保护的ARG似乎不经济。另外,N-氨基甲酰基谷氨酸盐(NCG)是N-乙酰基谷氨酸盐的结构类似物,氨基甲酰磷酸磷酸合成酶1的辅因子比ARG的瘤胃降解率低。另外,瘤胃上皮和十二指肠细胞潜在地利用了NCG进行尿素生成。向高产奶牛补充NCG可增加ARG和一氧化氮的血浆浓度,降低血浆氨氮,并改善泌乳性能和氮利用率。补充NCG可以提高大鼠的妊娠率,改善产仔数和胎儿存活率,从而改善母猪的生殖性能。口服NCG可以增加哺乳仔猪的血浆ARG和生长激素水平,并提高生长速度和肌肉蛋白合成。 NCG可能是相对便宜的饲料添加剂来源,可以比口服ARG提供重要的补偿,从而改善了反刍动物的健康和生产。在本文中,我们回顾了NCG进行ARG生物合成的机理及其在反刍动物中的生长,繁殖,产奶量和氮利用的意义。

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