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Effect of replacing grass silage with red clover silage on nutrient digestion, nitrogen metabolism, and milk fat composition in lactating cows fed diets containing a 60:40 forage-to-concentrate ratio

机译:用饲草精料比为60:40的饲喂奶牛用红三叶草青贮代替草青贮对养分消化,氮代谢和乳脂成分的影响

摘要

Diets based on red clover silage (RCS) typically increase the concentration of polyunsaturated fatty acids (PUFA) in ruminant meat and milk and lower the efficiency of N utilization compared with grass silages (GS). Four multiparous Finnish Ayrshire cows (108 d postpartum) fitted with rumen cannulas were used in a 4???4 Latin square design with 21-d periods to evaluate the effect of incremental replacement of GS with RCS on milk production, nutrient digestion, whole-body N metabolism, and milk fatty acid composition. Treatments comprised total mixed rations offered ad libitum, containing 600?g of forage/kg of diet dry matter (DM), with RCS replacing GS in ratios of 0:100, 33:67, 67:33, and 100:0 on a DM basis. Intake of DM and milk yield tended to be higher when RCS and GS were offered as a mixture than when fed alone. Forage species had no influence on the concentration or secretion of total milk fat, whereas replacing GS with RCS tended to decrease milk protein concentration and yield. Substitution of GS with RCS decreased linearly whole-tract apparent organic matter, fiber, and N digestion. Forage species had no effect on total nonammonia N at the omasum, whereas the flow of most AA at the omasum was higher for diets based on a mixture of forages. Replacing GS with RCS progressively lowered protein degradation in the rumen, increased linearly ruminal escape of dietary protein, and decreased linearly microbial protein synthesis. Incremental inclusion of RCS in the diet tended to lower whole-body N balance, increased linearly the proportion of dietary N excreted in feces and urine, and decreased linearly the utilization of dietary N for milk protein synthesis. Furthermore, replacing GS with RCS decreased linearly milk fat 4:0 to 8:0, 14:0, and 16:0 concentrations and increased linearly 18:2n-6 and 18:3n-3 concentrations, in the absence of changes in cis-9 18:1, cis-9, trans-11 18:2, or total trans fatty acid concentration. Inclusion of RCS in the diet progressively increased the apparent transfer of 18-carbon PUFA from the diet into milk, but had no effect on the amount of 18:2n-6 or 18:3n-3 at the omasum recovered in milk. In conclusion, forage species modified ruminal N metabolism, the flow of AA at the omasum, and whole-body N partitioning. A lower efficiency of N utilization for milk protein synthesis with RCS relative to GS was associated with decreased availability of AA for absorption, with some evidence of an imbalance in the supply of AA relative to requirements. Higher enrichment of PUFA in milk for diets based on RCS was related to an increased supply for absorption, with no indication that forage species substantially altered PUFA bioavailability.
机译:与草料青贮饲料(GS)相比,基于红三叶草青贮饲料(RCS)的饮食通常会提高反刍动物肉和牛奶中多不饱和脂肪酸(PUFA)的浓度,并降低氮的利用效率。在4×4拉丁方设计中,使用21 d周期的4乘4拉丁方形设计,使用四只装有瘤胃插管的芬兰产Ayrshire牛(产后108天),以评估用RCS逐步替代GS对产奶量,养分消化,全脂的影响。体氮代谢和牛奶脂肪酸组成。处理包括随意提供的总混合日粮,其中包含600微克草料/千克日粮干物质(DM),其中RCS以0:100、33:67、67:33和100:0的比例代替GS DM基础。当提供RCS和GS的混合物时,DM的摄入量和牛奶产量往往比单独喂养时更高。饲草种类对总乳脂的浓度或分泌量没有影响,而用RCS替代GS往往会降低乳蛋白浓度和产量。用RCS取代GS可以线性减少整个表观有机质,纤维和氮的消化。饲草种类对总氮的总非氨氮没有影响,而基于饲草混合的日粮中,大多数氨基酸在总氮中的流量较高。用RCS取代GS逐渐降低了瘤胃中蛋白质的降解,增加了膳食蛋白质的线性瘤胃逃逸,并降低了线性微生物蛋白质的合成。日粮中RCS的增加会降低全身氮平衡,线性增加粪便和尿中排泄的氮的比例,并线性减少日粮氮用于乳蛋白合成的利用率。此外,在不改变顺式变化的情况下,用RCS代替GS可以线性降低乳脂4:0至8:0、14:0和16:0的浓度,并线性增加18:2n-6和18:3n-3的浓度。 -9 18:1,顺式9,反式11 18:2或总反式脂肪酸浓度。日粮中添加RCS逐渐增加了日粮中18碳PUFA从表观向乳汁的转移,但对乳汁中回收的18:2n-6或18:3n-3量没有影响。总之,牧草种类改变了瘤胃中的氮代谢,AA在正气中的流动以及全身的N分配。与GS相比,RCS乳蛋白合成中氮的利用率较低,这与AA吸收的有效性降低有关,并且有一些证据表明,AA的供应相对于需求而言是不平衡的。基于RCS的日粮中牛奶中PUFA含量的增加与吸收供应增加有关,没有迹象表明饲草种类会大大改变PUFA的生物利用度。

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    Shingfield Kevin;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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