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Milk Fatty Acid Composition of Cows Fed a Total Mixed Ration or Pasture Plus Concentrates Replacing Corn with Fat

机译:饲喂总混合日粮或牧场的浓缩奶牛的牛奶脂肪酸成分以及用脂肪代替玉米的浓缩饲料

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Thirty-one Holstein cows (six ruminally cannulated) were used to evaluate milk fatty acids (FA) composition and conjugated linoleic acid (CLA) content on three dietary treatments: 1) total mixed rations (TMR), 2) pasture (Avena sativa L.) plus 6.7 kg DM/d of corn-based concentrate (PCorn), and 3) pasture plus PCorn with 0.8 kg DM/d of Ca salts of unsaturated FA replacing 1.9 kg DM/d of corn (PFat). No differences were found in total (22.4 kg/d) or pasture (18.5 kg/d) dry matter intake, ruminal pH, or total volatile fatty acids concentrations. Fat supplementation did not affect pasture neutral detergent fiber digestion. Milk production did not differ among treatments (19.9 kg/d) but 4% fat-corrected milk was lower for cows fed the PFat compared to cows fed the TMR (16.1 vs. 19.5 kg/d) primarily because of the lower milk fat percentage (2.56 vs. 3.91%). Milk protein concentration was higher for cows fed the TMR than those on both pasture treatments (3.70 vs. 3.45%). Milk from the cows fed the PCorn had a lower content of short- (11.9 vs. 10.4 g/100 g) and medium-chain (56.5 vs. 47.6 g/100 g) FA, and a higher C18:3 percentage (0.07 vs. 0.57 g/100 g) compared with TMR-fed. Cows fed the PFat had the lowest content of short- (8.85 g/100 g) and medium-chain (41.0 g/100 g) FA, and the highest of long-chain FA (51.4 g/100 g). The CLA content was higher for cows in PCorn treatment (1.12 g/100 g FA) compared with cows fed the TMR (0.41 g/100 g FA), whereas the cows fed the PFat had the highest content (1.91 g/100 g FA). Pasture-based diets increased the concentrations of long-chain unsaturated FA and CLA in milk fat. The partial re- placement of corn grain by Ca salts of unsaturated FA in grazing cows accentuated these changes. However, those changes in milk FA composition were related to a depression in milk fat.
机译:使用31头荷斯坦奶牛(六头反刍动物)在三种饮食方法上评估牛奶脂肪酸(FA)的组成和共轭亚油酸(CLA)的含量:1)总混合定量(TMR),2)牧场(Avena sativa L 。)加6.7 kg DM / d的玉米基浓缩物(PCorn),和3)牧场加PCorn和0.8 kg DM / d的不饱和FA钙盐代替1.9 kg DM / d的玉米(PFat)。在总干物质摄入量(22.4 kg / d)或牧场(18.5 kg / d),瘤胃pH或总挥发性脂肪酸浓度方面没有差异。补充脂肪不会影响牧场中性洗涤剂纤维的消化。不同处理之间的产奶量没有差异(19.9 kg / d),但饲喂PFat的奶牛比经TMR饲喂的奶牛低4%的脂肪校正乳(16.1 vs. 19.5 kg / d),主要是因为较低的乳脂百分比(2.56比3.91%)。饲喂TMR的奶牛的牛奶蛋白浓度高于两种牧场处理的奶牛(3.70比3.45%)。用PCorn喂养的奶牛的牛奶中短链脂肪酸(11.9 vs. 10.4 g / 100 g)和中链脂肪酸(56.5 vs. 47.6 g / 100 g)的含量较低,C18:3百分比较高(0.07 vs. 0.57克/ 100克)与TMR喂食相比。饲喂PFat的母牛的短链FA(8.85 g / 100 g)和中链FA(41.0 g / 100 g)含量最低,长链FA最高(51.4 g / 100 g)。与饲喂TMR的母牛(0.41 g / 100 g FA)相比,PCorn处理的母牛的CLA含量更高(1.12 g / 100 g FA),而饲喂PFat的母牛的CLA含量最高(1.91 g / 100 g FA) )。牧场饮食增加了乳脂中长链不饱和脂肪酸FA和CLA的浓度。在不放牧的奶牛中,不饱和脂肪酸的钙盐部分替代了玉米粒,加剧了这些变化。但是,牛奶FA成分的这些变化与牛奶脂肪的减少有关。

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