首页> 外文期刊>Journal of dairy science >Forage Intake, Meal Patterns, and Milk Production of Lactating Dairy Cows Fed Grass Silage or Pea-Wheat Bi-Crop Silages
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Forage Intake, Meal Patterns, and Milk Production of Lactating Dairy Cows Fed Grass Silage or Pea-Wheat Bi-Crop Silages

机译:饲喂草青贮饲料或豌豆小麦双作物青贮饲料的泌乳奶牛的饲料摄入,膳食模式和产奶量

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This study investigated the feed intake, milk production, and plasma nutrient status in dairy cows fed intercropped pea-wheat (bi-crop) silages comprised of contrasting ratios of pea to wheat. Spring peas (cv. Magnus) and wheat (cv. Axona) sown at either high (75:25) or low (25:75) pea inclusion rates were harvested after 13 (Cut 1) or 15 (Cut 2) wk. Eighteen Holstein-Friesian cows between wk 9 and 10 of lactation were used in a cyclical changeover design with three 28-d periods. Cows were fed the bi-crop silages and 6 kg of concentrates or second-cut grass silage supplemented with 6 (GS6) or 9 (GS9) kg/d of concentrates. Forage intakes were higher when bi-crops were fed (10.3 to 11.4 kg dry matter [DM]/d) than when grass silage was fed (8.6 kg DM/d). Total DM intake was similar among cows fed the bi-crop silages and GS9 diets, but intakes for GS6 were at least 1.7 kg DM/d lower. Increasing the pea inclusion rate increased the crude protein (CP) content of the ration, but it did not enhance forage quality or animal performance. The rate of intake of the different forages was similar, so that the higher intakes of bi-crop silages were associated with more time spent at the feedbunk and an increased number of meals. Diet digestibility ranged from 531 to 650 g/kg, and the highest value was given by the Cut 1 bi-crop silage diet. Milk yield tended to be similar for cows fed the Cut 2 bi-crop and GS9 diets, and these values were at least 1.7 kg higher than those for cows fed on other treatments. Generally, the bi-crop diets resulted in higher milk fat contents and lower polyunsaturated fatty acid contents. Milk protein content was highest for cows fed the GS9 diet. Blood metabolite content was unaffected by treatment except for blood urea nitrogen content, which was higher in cows fed the bi-crop silages, reflecting reduced N-use efficiency with these diets. The study showed that pea-wheat bi-crop silages can be used to replace moderate-quality grass silage in dairy cow rations, but their role as alternatives to high-quality forages requires additional investigation.
机译:这项研究调查了饲喂间作豌豆小麦青贮(双作物)青贮饲料的奶牛的采食量,产奶量和血浆营养状况,其中豌豆与小麦的比例不同。每周13(切割1)或15(切割2)后收获的豌豆的高(75:25)或低(25:75)播种的春豌豆(马格努斯)和小麦(阿克索纳)。在哺乳期第9周到第10周之间的18头荷斯坦-弗里斯兰奶牛在三个28天的周期内进行了周期转换设计。给母牛饲喂双季青贮饲料和6千克浓缩饲料或补充6(GS6)或9(GS9)千克/天浓缩饲料的二次割草青贮饲料。饲喂双季作物(10.3至11.4 kg干物质[DM] / d)时的草料摄入量高于饲喂青贮饲料(8.6 kg DM / d)的草料摄入量。在饲喂双季青贮饲料和GS9日粮的奶牛中,DM的总摄入量相似,但GS6的摄入量至少低1.7 kg DM / d。豌豆包合率的提高增加了日粮中粗蛋白(CP)的含量,但并未提高饲草质量或动物性能。不同草料的采食率相似,因此,双季青贮饲料的采食量较高,这与在饲料槽上花费的时间更多和进餐次数增加有关。日粮的消化率范围为531至650 g / kg,其中最高的是Cut 1双季青贮饲料。饲喂Cut 2双作和GS9日粮的奶牛的牛奶产量趋于相似,并且这些值比饲喂其他处理的奶牛的牛奶高至少1.7公斤。通常,双作物饮食导致较高的牛奶脂肪含量和较低的多不饱和脂肪酸含量。饲喂GS9日粮的奶牛的牛奶蛋白质含量最高。血液代谢物含量不受治疗影响,但尿素氮含量除外,饲喂双季青贮饲料的母牛的尿素氮含量更高,这反映了这些日粮的氮利用效率降低。该研究表明,豌豆-小麦双季青贮饲料可以用来代替奶牛口粮中的中等品质的青贮饲料,但是它们作为优质饲料的替代品的作用还需要进一步研究。

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