以四种不同牧草青贮饲料为基础饲粮的哺乳后期奶山羊的生产性能和乳成分

A. Doyon , G.F. Tremblay , R. Gervais , P.Y. Chouinard
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引用次数: 0

摘要

本次试验的目的是评估饲喂四种不同牧草对奶山羊产奶量和成分(包括蛋白质和脂肪酸含量)的影响。试验收获了两种禾本科牧草(提莫西;在早期萌发时刈割,意大利黑麦草;在 25 厘米高时刈割)和两种豆科牧草(紫花苜蓿和白三叶;均在开花 10%时刈割),并将其保存为青贮饲料。采用 4 × 4 拉丁正方形重复设计,使用了 12 只泌乳后期的三个不同品种的奶山羊(4 只阿尔卑斯山羊、4 只托根堡山羊和 4 只萨能山羊)。山羊可自由采食所测试的牧草,并辅以 180 克/天的精料(以大麦和热处理大豆粉为基础)。梯牧草的DM摄入量较低,黑麦草和白三叶的摄入量居中,而紫花苜蓿的摄入量较高。与其他三种青贮饲料相比,梯牧草的产奶量较低。各处理的乳脂产量相似。与其他三种青贮饲料相比,梯牧草的牛奶CP产量较低。牛奶氮效率(分泌的氮/摄入的氮)在梯牧草中较高,在黑麦草中居中,而在两种豆科植物青贮饲料中较低。与青贮禾本科牧草相比,饲喂豆科牧草的山羊奶中真蛋白所占的比例较低。酪蛋白和乳清蛋白占真蛋白的比例在梯牧草中较高,在黑麦草和白三叶中居中,在紫花苜蓿中较低。在青贮禾本科牧草中,黑麦草的顺式-9、顺式-12、顺式-15 18:3 的摄入量和乳汁分泌量均高于梯牧草。因此,从食物摄入到乳汁分泌的转移效率在这两种处理之间没有差异。豆科牧草的差异较小,因为紫花苜蓿和白三叶的顺式-9、顺式-12、顺式-15 18:3 摄入量和乳汁分泌量相似。然而,饲喂紫花苜蓿时,顺式-9、顺式-12、顺式-15 18:3 从日粮到牛奶的转移率最高。总之,饲喂奶山羊的饲草种类会影响牛奶中脂肪酸和蛋白质组分的组成,这可能会影响牛奶的营养价值和技术特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production performance and milk composition of late lactation dairy goats fed diets based on silages of four different forage species

The objective of the current trial was to evaluate the effect of feeding four different forage species on milk yield and composition, including protein and fatty acid profiles, in dairy goats. Two grasses (Timothy; mown at early heading, and Italian ryegrass; mown at 25 cm height) and two legumes (Alfalfa and White clover; both mown at 10% bloom) were harvested and conserved as silage. Twelve dairy goats of three different breeds (4 Alpine, 4 Toggenburg, and 4 Saanen) in late lactation were used in a replicated 4 × 4 Latin square design. Goats were offered ad libitum access to the tested forages supplemented with 180 g/d of concentrates based on rolled barley and heat-treated soybean meal. DM intake was lower with timothy, intermediate with ryegrass and white clover, and greater with alfalfa. Milk yield was lower with timothy as compared with the other three silages. Milk fat yield was similar among treatments. Milk CP yield was lower with timothy as compared with the other three silages. Milk N efficiency (N secreted/N intake) was greater with timothy, intermediate with ryegrass, and lower with the two legume silages. The proportion of true protein as a percentage of CP was lower in milk from goats fed legume as compared with grass silages. Proportions of casein and whey protein expressed as percentages of true protein were greater with timothy, intermediate with ryegrass and white clover, and lower with alfalfa. Among grass silages, intake and milk secretion of cis-9, cis-12 cis-15 18:3 was greater with ryegrass than with timothy. As a result, the transfer efficiency from dietary intake to secretion in milk was not different between these two treatments. Fewer differences were observed regarding legume forages, as cis-9, cis-12, cis-15 18:3 intake and milk secretion were similar with alfalfa and white clover. However, the transfer of cis-9, cis-12, cis-15 18:3 from diet to milk was highest when feeding alfalfa. In conclusion, forage species fed to dairy goats influence milk composition in terms of fatty acids and protein fractions, which can potentially impact the nutritive value and technological properties of milk.

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