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Effects of forage type and extruded linseed supplementation on methane production and milk fatty acid composition of lactating dairy cows

机译:饲草类型和膨化亚麻籽补给对泌乳奶牛甲烷产生和牛奶脂肪酸组成的影响

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摘要

Replacing dietary grass silage (GS) with maize silage (MS) and dietary fat supplements may reduce milk concentration of specific saturated fatty acids (SFA) and can reduce methane production by dairy cows. The present study investigated the effect of feeding an extruded linseed supplement on milk fatty acid (FA) composition and methane production of lactating dairy cows, and whether basal forage type, in diets formulated for similar neutral detergent fiber and starch, altered the response to the extruded linseed supplement. Four mid-lactation Holstein-Friesian cows were fed diets as total mixed rations, containing either high proportions of MS or GS, both with or without extruded linseed supplement, in a 4 × 4 Latin square design experiment with 28-d periods. Diets contained 500 g of forage/kg of dry matter (DM) containing MS and GS in proportions (DM basis) of either 75:25 or 25:75 for high MS or high GS diets, respectively. Extruded linseed supplement (275 g/kg ether extract, DM basis) was included in treatment diets at 50 g/kg of DM. Milk yields, DM intake, milk composition, and methane production were measured at the end of each experimental period when cows were housed in respiration chambers. Whereas DM intake was higher for the MS-based diet, forage type and extruded linseed had no significant effect on milk yield, milk fat, protein, or lactose concentration, methane production, or methane per kilogram of DM intake or milk yield. Total milk fat SFA concentrations were lower with MS compared with GS-based diets (65.4 vs. 68.4 g/100 g of FA, respectively) and with extruded linseed compared with no extruded linseed (65.2 vs. 68.6 g/100 g of FA, respectively), and these effects were additive. Concentrations of total trans FA were higher with MS compared with GS-based diets (7.0 vs. 5.4 g/100 g of FA, respectively) and when extruded linseed was fed (6.8 vs. 5.6 g/100 g of FA, respectively). Total n-3 FA were higher when extruded linseed was fed compared with no extruded linseed (1.2 vs. 0.8 g/100 g of FA, respectively), whereas total n-6 polyunsaturated FA were higher when feeding MS compared with GS (2.5 vs. 2.1 g/100 g of FA, respectively). Feeding extruded linseed and MS both provided potentially beneficial decreases in SFA concentration of milk, and no significant interactions were found between extruded linseed supplementation and forage type. However, both MS and extruded linseed increased trans FA concentration in milk fat. Neither MS nor extruded linseed had significant effects on methane production or yield, but the amounts of supplemental lipid provided by extruded linseed were relatively small.
机译:用玉米青贮饲料(MS)和膳食脂肪补充剂替代饮食青贮饲料(GS)可能会降低牛奶中特定饱和脂肪酸(SFA)的浓度,并可能降低奶牛的甲烷产量。本研究调查了饲喂膨化亚麻籽补充剂对泌乳奶牛的牛奶脂肪酸(FA)组成和甲烷产生的影响,以及在为类似中性洗涤剂纤维和淀粉配制的日粮中基础饲草类型是否改变了对牛乳的反应。挤压亚麻籽补品。在4×4拉丁方设计实验中,以28天的4×4拉丁方设计实验,对四头泌乳中期的荷斯坦-弗里斯兰奶以总混合定量饲喂日粮,其中含有高比例的MS或GS,有或没有挤出亚麻籽补品。日粮含有500克草料/千克干物质(DM),其中高MS日粮或高GS日粮的MS和GS比例(以DM为基准)分别为75:25或25:75。挤压亚麻籽补品(275 g / kg乙醚提取物,以DM为基础)以50 g / kg DM的含量计入治疗饮食。在将每个奶牛饲养在呼吸室中的每个实验阶段结束时,测量其牛奶产量,干物质摄入量,牛奶成分和甲烷产量。以MS为基础的日粮DM摄入量较高,饲草类型和膨化亚麻籽对牛奶产量,乳脂,蛋白质或乳糖浓度,甲烷产量或甲烷/千克DM摄入量或牛奶产量无明显影响。与基于GS的日粮相比,MS的总乳脂SFA浓度要低(分别为65.4和68.4 g / 100 g FA)和与挤出的亚麻子相比,无脂的亚麻籽(65.2 vs. 68.6 g / 100 g FA),分别),这些效果是累加的。与基于GS的日粮相比,MS中总反式FA的浓度更高(分别为7.0 vs. 5.4 g / 100 g的FA)和饲喂膨松亚麻籽(分别为6.8 vs. 5.6 g / 100 g的FA)。饲喂膨松亚麻籽时,总n-3 FA高于无膨松亚麻籽(分别为1.2 vs. 0.8 g / 100 g FA),而饲喂MS时,总n-6多不饱和FA高于GS(2.5vs。分别为2.1 g / 100 g FA)。饲喂膨化的亚麻籽和MS均可能降低牛奶中SFA的浓度,并且在膨化的亚麻籽补充剂和饲料类型之间未发现明显的相互作用。但是,MS和挤压亚麻籽均增加了乳脂中反式FA的浓度。 MS和挤压亚麻籽都不会对甲烷的产生或产量产生显着影响,但是挤压亚麻籽提供的补充脂质的量相对较小。

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