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首页> 外文期刊>Journal of Animal Science >Oversupplying metabolizable protein in late gestation for beef cattle: effects on postpartum ruminal fermentation, blood metabolites, skeletal muscle catabolism, colostrum composition, milk yield and composition, and calf growth performance
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Oversupplying metabolizable protein in late gestation for beef cattle: effects on postpartum ruminal fermentation, blood metabolites, skeletal muscle catabolism, colostrum composition, milk yield and composition, and calf growth performance

机译:在牛肉牛的后期妊娠中供过于追加代谢蛋白:对产后瘤胃发酵,血液代谢物,骨骼肌分解代谢,初乳组合物,牛奶产量和组成以及小牛生长性能的影响

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The objective of the study was to determine whether oversupplying MP prepartum affects postpartum cow BW, colostrum composition, milk production and composition, protein catabolism in the dam, and calf growth. Crossbred Hereford heifers were individually fed a control treatment designed to meet MP requirements (CON; n = 10) or 133% of the MP requirement (HMP; n = 11) from day -55 +/- 4 until parturition. All cows were provided a common postpartum diet. Cow BW was measured on days 7 +/- 1, 14 +/- 2, 28 +/- 3, 57 +/- 4, 82 +/- 5, and 111 +/- 3 relative to parturition. DMI and ruminal pH were measured daily and summarized by week until day 33. Milk yield was estimated based on a 12-h two-quarter milk yield on days 7 +/- 1, 12 +/- 1, 28 +/- 3, 33 +/- 3, 70 +/- 3, and 112 +/- 3. Urine samples were collected from cows over a 6-d period starting on days 7 +/- 1 and 28 +/- 3 and the composited samples were analyzed for 3-methylhistidine (3-MH) and creatinine. Muscle samples were collected from cows on day 13 +/- 1 while calf muscle samples were collected on days 2 and 111 +/- 3 of age. Muscle samples from cows were analyzed for markers of protein catabolism, and calf muscle samples were analyzed for genes regulating cell growth and differentiation. Data were analyzed as a randomized complete block design using the MIXED procedure of SAS accounting for repeated measures when necessary. Postpartum BW did not differ (P &= 0.30) by treatment, day, or the interaction of treatment and day (T x D), but rump fat decreased (P = 0.011) as lactation progressed. DMI decreased during weeks 2 and 3 compared to 1 and 4, whereas ruminal pH was less during weeks 2, 3, and 4 relative to week 1. Colostrum fat concentration was less (P = 0.003) for HMP than CON; but, milk production was not affected by treatment. Milk yield was greatest from days 7 to 33 and decreased thereafter (P & 0.01). Urinary 3-MH and the 3-MH: creatinine ratio did not differ by treatment, day, or the T x D (P &= 0.22) interaction, nor was there a difference (P &= 0.13) in the abundance of catabolic proteins. Calf growth was not affected by treatment, but HMP calves had greater expression (T x D, P = 0.05) of PPARG while PKM expression increased for CON calves (T x D, P = 0.04) at day 111 compared to their expression at day 2. Overfeeding MP during late gestation does not improve postpartum indicators of N balance or maternal muscle turnover but may alter colostrum composition and calf gene expression at weaning.
机译:该研究的目的是确定MP预备是否会影响产后牛BW,初乳组合物,牛奶生产和组成,蛋白质分解代谢和小牛生长。杂交符合Heifers的小母牛是单独喂养的控制处理,该控制处理旨在满足MP要求(CON; N = 10)或133%的MP要求(HMP; n = 11),直到份额为55 +/- 4。所有奶牛都提供了常见的产后饮食。牛BW在第7天+/- 1,14 +/- 2,28 +/- 3,57 +/- 4,82 +/- 5和111 +/- 3上测量。每天测量DMI和瘤胃pH值,并截至第33天,截至第33天,估计牛奶产量基于12-H +/- 1,12 +/- 1,28 +/- 3,从第7天+/- 1和28 +/- 3开始的6-D期间收集来自奶牛的33 +/- 3,70 +/- 3和112 +/- 3.尿液样本。分析3-甲基氨基氨基(3mH)和肌酐。在第13天+/- 1时从奶牛收集肌肉样品,而小腿肌样品在第2天和111天+/- 3时收集。分析来自奶牛的肌肉样品用于蛋白分解代谢的标志物,分析小牛肌样用于调节细胞生长和分化的基因。使用SAS的混合过程分析为随机完整块设计,以便在必要时进行重复措施。产后BW通过治疗,日期或治疗和日(T X D)的相互作用没有不同(P& = 0.30),但随着泌乳的进展,钙脂肪降低(p = 0.011)。与1和4相比,DMI在第2周和3周内减少,而在第2,3,3,3周期间,瘤胃pH值较小,而不是每周1.初乳脂肪浓度较少(p = 0.003),而不是孔;但是,牛奶生产不受治疗的影响。牛奶产量从第7到33天最大,此后减少(P& 0.01)。尿3-MH和3-MH:肌酐比率通过治疗,日或T X D(P& GT; = 0.22)相互作用没有差异,也没有差异(P& = 0.13)在丰富的分解代谢蛋白质中。小牛生长不受治疗的影响,但HMP小腿的PPARG具有更大的表达(T X D,P = 0.05),而PKM表达在第111天(T X D,P = 0.04)增加到当天的表达相比2.晚期妊娠期的过度熔体不会改善N平衡或母体肌肉营业额的产后指标,但可能会在断奶时改变初乳组合物和小牛基因表达。

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