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2-羟基-4-(甲硫基)丁酸和DL-蛋氨酸对幼猪的相对有效性

The relative effectiveness of 2-hydroxy-4-(methylthio) butanoic acid and DL-methionine in young swine.

作者信息

Knight C D, Atwell C A, Wuelling C W, Ivey F J, Dibner J J

机构信息

Novus International, Inc., St. Charles, MO 63304, USA.

出版信息

J Anim Sci. 1998 Mar;76(3):781-7. doi: 10.2527/1998.763781x.

Abstract

We compared the effectiveness of 2-hydroxy-4-(methylthio) butanoic acid (HMB) and DL-methionine (DLM) as sources of L-methionine activity in methionine-deficient primary cultures of pig liver cells and methionine-deficient early-weaned pigs. Viable hepatocytes were obtained from minced pig liver and maintained in a high density, differentiated, nonproliferation cell culture system. Culture medium was supplemented with HMB, DLM, or L-methionine, and cells were pulse-dosed with L-[14C(U)]leucine for 24 h to determine the level of protein synthesis. Leucine incorporation per milligram of protein indicated a six-to eightfold increase in protein synthesis (P < .01) with methionine levels between 5 and 10 microM, regardless of source of methionine activity. Two 24-pen replicate methionine dose titrations were conducted with 95 early-weaned commercial crossbred pigs. The pelleted corn, dried whey, and porcine plasma basal diet contained 1.5% lysine, .23% methionine, and .48% cystine and was supplemented with 0, .05, or .10% methionine activity as DLM or HMB for 21 d. There was a 134, 104, and 61% increase (P < .01) in cumulative ADG for each successive week on study with a 30 and 19% improvement in feed/gain (P < .01) after 7 and 14 d. Performance responses due to source of methionine activity did not differ and slope ratio potency determinations (gain vs intake of methionine source) of HMB vs DLM indicated a 119, 111, and 95% relative activity for cumulative weekly performance. These results support the hypothesis that HMB and DLM provide equimolar levels of methionine activity in swine.

摘要

我们比较了2-羟基-4-(甲硫基)丁酸(HMB)和DL-蛋氨酸(DLM)作为蛋氨酸活性来源,在蛋氨酸缺乏的原代猪肝细胞培养物和蛋氨酸缺乏的早期断奶仔猪中的效果。从切碎的猪肝中获取有活力的肝细胞,并将其维持在高密度、分化、非增殖的细胞培养系统中。培养基中添加了HMB、DLM或L-蛋氨酸,并用L-[14C(U)]亮氨酸对细胞进行24小时脉冲给药,以确定蛋白质合成水平。每毫克蛋白质的亮氨酸掺入量表明,无论蛋氨酸活性来源如何,当蛋氨酸水平在5至10微摩尔之间时,蛋白质合成增加了6至8倍(P <.01)。对95头早期断奶的商品杂交猪进行了两次24栏重复的蛋氨酸剂量滴定。颗粒玉米、干乳清和猪血浆基础日粮含有1.5%的赖氨酸、0.23%的蛋氨酸和0.48%的胱氨酸,并添加了0、0.05或0.10%的蛋氨酸活性作为DLM或HMB,持续21天。在研究的连续几周中,累积平均日增重分别增加了134%、104%和61%(P <.01),在7天和14天后,饲料/增重分别提高了30%和19%(P <.01)。由于蛋氨酸活性来源导致的性能反应没有差异,HMB与DLM的斜率比效价测定(增重与蛋氨酸来源摄入量)表明,累积每周性能的相对活性分别为119%、111%和95%。这些结果支持了HMB和DLM在猪中提供等摩尔水平蛋氨酸活性的假设。

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