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低、中、高油脂的玉米干酒糟及其可溶物对育肥猪生长性能、养分消化率和脂肪品质的影响。

The effects of low-, medium-, and high-oil distillers dried grains with solubles on growth performance, nutrient digestibility, and fat quality in finishing pigs.

作者信息

Graham A B, Goodband R D, Tokach M D, Dritz S S, DeRouchey J M, Nitikanchana S, Updike J J

机构信息

Department of Animal Sciences and Industry, College of Agriculture.

Department of Animal Sciences and Industry, College of Agriculture

出版信息

J Anim Sci. 2014 Aug;92(8):3610-23. doi: 10.2527/jas.2014-7678. Epub 2014 Jul 28.

Abstract

A total of 1,480 pigs were used in 3 experiments to determine the effects of corn distillers dried grains with solubles (DDGS) varying in oil content on growth performance, carcass traits, and nutrient digestibility in finishing pigs. In Exp. 1, 1,198 pigs (PIC Line 337 × 1050; initially 46.1 kg) were allotted to a corn-soybean meal-based diet or diets with 20 or 40% of a 5.4% oil DDGS (29.5% CP, 8.9% ADF, and 21.8% NDF; as-fed basis) or a 9.6% oil DDGS (29.6% CP, 15.3% ADF, and 28.6% NDF; as-fed basis). From d 0 to 82, ADG was unaffected by DDGS source or level. However, increasing 5.4% oil DDGS decreased (linear, P < 0.01) G:F, whereas G:F did not change among pigs fed 9.6% oil DDGS (DDGS source × level interaction; P < 0.01). Regardless of DDGS source, carcass yield and HCW decreased (linear, P < 0.04) with increasing DDGS. Increasing DDGS increased jowl iodine value (IV), but the magnitude was greater in pigs fed the 9.6% oil DDGS compared with those fed 5.4% oil DDGS (DDGS source × level interaction; P < 0.01). In Exp. 2, 270 pigs (PIC Line 327 × 1050; initially 46.5 kg) were allotted a corn-soybean meal-based diet or diets with 20 or 40% of a 9.4% oil DDGS (29.4% CP, 19.6% ADF, and 34.5% NDF; as-fed basis) or a 12.1% oil DDGS (28.5% CP, 17.6% ADF, and 31.4% NDF; as-fed basis). From d 0 to 75, ADG increased and then decreased for pigs fed 9.4% oil DDGS but was unchanged for pigs fed 12.1% oil DDGS (quadratic interaction, P < 0.02). Increasing DDGS increased (linear, P < 0.01) jowl IV and tended (linear, P < 0.07) to increase G:F. Regardless of source, HCW and carcass yield decreased (linear, P < 0.05) as DDGS increased. In Exp. 3, nutrient digestibility of the 4 DDGS sources was determined using pigs fed either a corn-based basal diet (96.6% corn and 3.4% vitamins and minerals) or a DDGS diet with 50% basal diet and 50% DDGS. On an as-fed basis, corn contained 3,871 and 3,515 kcal/kg GE and DE, respectively. The 5.4, 9.6, 9.4, and 12.1% oil DDGS contained 4,347, 4,648, 4,723, and 4,904 kcal/kg (as-fed basis) GE and 3,417, 3,690, 3,838, and 3,734 kcal/kg DE, respectively (as-fed basis). Stepwise regression indicated that the oil (ether extract) content was the only significant variable to explain differences in energy content. The equations generated to predict DE and NE as a function of oil content on an as-fed basis were DE (kcal/kg) = 62.347 × ether extract (%) + 3,058.13 (n = 5, adjusted R(2) = 0.41) and NE (kcal/kg) = 115.011 × ether extract (%) + 1,501.01 (n = 5, adjusted R(2) = 0.86).

摘要

总共1480头猪被用于3项试验,以确定不同含油量的玉米干酒糟及其可溶物(DDGS)对育肥猪生长性能、胴体性状和养分消化率的影响。在试验1中,1198头猪(PIC 337系×1050系;初始体重46.1千克)被分配到以玉米 - 豆粕为基础的日粮,或含有20%或40%含油量为5.4%的DDGS(29.5%粗蛋白、8.9%酸性洗涤纤维、21.8%中性洗涤纤维;按风干基础计)或含油量为9.6%的DDGS(29.6%粗蛋白、15.3%酸性洗涤纤维、28.6%中性洗涤纤维;按风干基础计)的日粮中。从第0天到第82天,平均日增重不受DDGS来源或水平的影响。然而,增加含油量为5.4%的DDGS会降低(线性关系,P<0.01)料重比,而饲喂含油量为9.6%的DDGS的猪的料重比没有变化(DDGS来源×水平交互作用;P<0.01)。无论DDGS来源如何,随着DDGS含量增加,胴体产量和热胴体重均降低(线性关系,P<0.04)。增加DDGS会提高颊脂碘值(IV),但与饲喂含油量为5.4%的DDGS的猪相比,饲喂含油量为9.6%的DDGS的猪提高幅度更大(DDGS来源×水平交互作用;P<0.01)。在试验2中,270头猪(PIC 327系×1050系;初始体重46.5千克)被分配到以玉米 - 豆粕为基础的日粮,或含有20%或40%含油量为9.4%的DDGS(29.4%粗蛋白、19.6%酸性洗涤纤维、34.5%中性洗涤纤维;按风干基础计)或含油量为12.1%的DDGS(28.5%粗蛋白、17.6%酸性洗涤纤维、31.4%中性洗涤纤维;按风干基础计)的日粮中。从第0天到第75天,饲喂含油量为9.4%的DDGS的猪的平均日增重先增加后降低,而饲喂含油量为12.1%的DDGS的猪的平均日增重没有变化(二次交互作用,P<0.02)。增加DDGS会提高(线性关系,P<0.01)颊脂IV,并倾向于(线性关系,P<0.07)提高料重比。无论来源如何,随着DDGS增加,热胴体重和胴体产量均降低(线性关系,P<0.05)。在试验3中,使用饲喂玉米基础日粮(96.6%玉米和3.4%维生素及矿物质)或含50%基础日粮和50% DDGS的DDGS日粮的猪来测定4种DDGS来源的养分消化率。按风干基础计,玉米的总能和消化能分别为3871和3515千卡/千克。含油量为5.4%、9.6%、9.4%和12.1%的DDGS的总能分别为4347、4648、4723和4904千卡/千克(按风干基础计),消化能分别为3417、3690、3838和3734千卡/千克(按风干基础计)。逐步回归表明,油(乙醚提取物)含量是解释能量含量差异的唯一显著变量。根据含油量预测消化能和净能的方程为:消化能(千卡/千克)=62.347×乙醚提取物(%)+3058.13(n = 5,调整R² = 0.41),净能(千卡/千克)=115.011×乙醚提取物(%)+1501.01(n = 5,调整R² = 0.86)。

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