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首页> 外文期刊>Journal of dairy science >Effect of rumen-protected methionine on feed intake, milk production, true milk protein concentration, and true milk protein yield, and the factors that influence these effects: A meta-analysis
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Effect of rumen-protected methionine on feed intake, milk production, true milk protein concentration, and true milk protein yield, and the factors that influence these effects: A meta-analysis

机译:瘤胃保护的蛋氨酸对饲料摄入,产奶量,真实乳蛋白浓度和真实乳蛋白产量的影响,以及影响这些影响的因素:荟萃分析

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摘要

A meta-analysis of published studies was used to investigate the effect of rumen-protected methionine (RPM) added to the diets of lactating dairy cattle on dry matter intake, milk production, true milk protein (TMP) production, and milk fat yield. Differences in responses between 2 commonly used RPM products, Mepron (Evonik Industries, Hanau, Germany) and Smartamine (Adisseo, Antony, France), were investigated as well as dietary and animal factors that could influence responses. Diets were coded with respect to the amino acid (AA) deficiency of the control diet as predicted by the AminoCow model to test the effect of AA deficiencies on RPM response. Thirty-five studies were identified, 17 studies evaluating Mepron, 18 studies evaluating Smartamine, and 1 study evaluating both. This permitted 75 dietary comparisons between control and RPM-added diets. Diets were entered into the AminoCow and the 2001 National Research Council models to compare predictions of Met, Lys, and metabolizable protein (MP) flow. Mean Met and Lys in diets where RPM was fed were estimated to be 2.35 and 6.33% of MP, respectively. Predictions of flows between models were similar. Overall, RPM addition to diets increased production of TMP, both as percentage (0.07%) and yield (27 g/d). Dry matter intake and milk fat percentage were slightly decreased, whereas milk production was slightly increased. Differences between products were detected for all production variables, with Mepron-fed cows producing less TMP percentage but greater milk production, resulting in twice as much TMP yield. Milk protein response to RPM was not related to predicted AA deficiency, calculated Met deficiency, or Met as a percentage of MP. Other dietary factors, including Lysrnflow (g/d), Lys as percentage of MP, neutral detergent fiber percentage, crude protein percentage, or energy balance, had no detectable effects on TMP response. When cows with a predicted positive AA balance were fed RPM, milk production increased, but when AA balance was negative, milk production decreased. Amount of RPM added to the diet was not correlated to TMP response. This study does not support the necessity of a high Lys level as a prerequisite to obtaining a TMP response to feeding RPM or the MP requirement suggested by the National Research Council model (2001). However, more dose-response studies over a wide range of milk production and dietary regimens will be required to more clearly establish AA requirements and to predict responses to RPM supplementation.
机译:对已发表研究的荟萃分析用于研究泌乳奶牛日粮中添加瘤胃保护的蛋氨酸(RPM)对干物质摄入,产奶量,真乳蛋白(TMP)产量和乳脂产量的影响。研究了2种常用RPM产品在Mepron(德国哈瑙的赢创工业公司)和Smartamine(法国Antony的Adisseo)之间的反应差异,以及影响反应的饮食和动物因素。按照AminoCow模型的预测,对照饮食的氨基酸(AA)缺乏对饮食进行编码,以测试AA缺乏对RPM反应的影响。共鉴定出35项研究,其中17项评估Mepron,18项评估Smartamine,以及1项评估两者。这允许在对照饮食和添加RPM的饮食之间进行75次饮食比较。将饮食输入AminoCow和2001年国家研究委员会的模型中,以比较Met,Lys和可代谢蛋白(MP)流量的预测。饲喂RPM的日粮中的平均Met和Lys分别估计为MP的2.35%和6.33%。模型之间的流量预测相似。总体而言,在日粮中添加RPM可以提高TMP的产量,无论是百分比(0.07%)还是产量(27 g / d)。干物质摄入和乳脂百分比略有下降,而乳产量略有增加。在所有生产变量中都检测到了产品之间的差异,用Mepron喂养的母牛产生的TMP百分比更低,但牛奶产量更高,从而导致TMP产量提高一倍。乳蛋白对RPM的反应与预测的AA缺乏症,计算的Met缺乏症或Met占MP的百分比无关。其他饮食因素,包括Lysrnflow(g / d),Lys作为MP的百分比,中性洗涤剂纤维百分比,粗蛋白百分比或能量平衡,对TMP反应无可检测的影响。当AA预测为AA平衡为正的母牛饲喂RPM时,产奶量增加,但是AA平衡为负数时,乳汁产量则下降。饮食中添加的RPM量与TMP反应无关。这项研究不支持将高Lys水平作为获得TMP对饲喂RPM的反应或国家研究委员会模型(2001)建议的MP要求的先决条件。但是,将需要在更广泛的牛奶生产和饮食方案上进行更多的剂量反应研究,以更清楚地确定AA的需求量并预测对RPM补充的反应。

著录项

  • 来源
    《Journal of dairy science》 |2010年第5期|p.2105-2118|共14页
  • 作者

    R. A. Patton;

  • 作者单位

    Nittany Dairy Nutrition Inc., Mifflinburg, PA 17844;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dairy cow; rumen-protected methionine; milk protein;

    机译:奶牛;瘤胃保护的蛋氨酸;牛奶蛋白;

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