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Amino acid and energy digestibility of Brassica napus canola meal from different crushing plants fed to ileal-cannulated grower pigs

机译:来自喂食到ILAL-CALLING GRORDER PIG的不同破碎植物的蜜腺嘧啶植物牛奶氨基酸和能量消化率

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Canola meal (CM) can replace soybean meal (SBM) as dietary source of supplemental protein for pigs; however, varying nutritive quality of CM may cause inaccurate diet formulation and unexpected growth performance, but is rarely reported. In an 8 x 8 Latin square, the standardised ileal digestibility coefficient (CSID) of crude protein (CP) and amino acids (AA), apparent total tract digestibility coefficient (CATTD) of gross energy (GE), digestible energy (DE) value and the predicted net energy (NE) value were evaluated for 5 Brassica napus CM samples originating in a single crop year from 5 Western Canadian crushing plants and compared to SBM. Eight ileal-cannulated grower pigs (initial body weight [BW]: 32 +/- 1.9 kg) were fed 8 diets (400 g SBM/kg, five 400 g CM/kg, wheat-based basal and N-free) at 2.8 x maintenance (0.46 MJ of DE per kg of BW0.75) for 8 periods of 9 days each. Standardised to 100 g moisture/kg, the SBM and 5 CM samples contained 461 and 357-413 g CP/kg, 23.9 and 10.6-35.8 g ether extract (EE), 69 and 218-251 g neutral detergent fibre (NDF)/kg and 17.6 and 17.9-18.1 MJ GE/kg, respectively. The CSID of essential AA such as lysine, threonine and methionine was greater (P 0.05) in SBM than in the 5 CM samples, except for tryptophan. The CSID of lysine, threonine and methionine differed (P 0.05) among CM samples and ranged 0.84-0.88 for lysine, 0.82-0.86 for threonine and 0.89-0.92 for methionine. The CATTD of energy ranged 0.753-0.788 and predicted NE value ranged 7.56-7.97 MJ/kg as fed among CM samples. Total glucosinolate content ranged from 1.2-7.6 mu mol/g and was negatively correlated (r =- 0.390; P = 0.013) with DE value of the 5 CM samples, but not with CSID of AA. In conclusion, samples of CM processed in Western Canada varied in CP and EE content, but CSID of AA varied minimally. The measured DE and predicted NE values were close to NRC (2012), but greater than values for rapeseed meal in the INRA database (Sauvant et al., 2004), indicating that database selection for diet formulation matters.
机译:油菜饭(CM)可以将大豆餐(SBM)替代为猪的补充蛋白质的膳食来源;然而,不同的CM营养质量可能导致饮食制剂的不准确性和意外的生长性能,但很少报道。在8×8拉丁方形,粗蛋白(CP)和氨基酸(AA)的标准化髂骨消化系数(CSID),总能量(GE),可消化能量(DE)值的表观总介质消化系数(CATTD)并评估预测的净能量(NE)值,用于从5个加拿大加拿大碎厂的单一作物年份的5个芸苔属植物CM样品进行评估,并与SBM相比。八个髂骨 - 插管种植猪(初始体重[BW]:32 +/- 1.9千克)在2.8时喂食8饮食(400g SBM / kg,五个400g cm / kg,小麦的基础和无n) X维护(每千克每千克0.46 MJ),每次9天。标准化为100g水分/ kg,Sbm和5cm样品含有461和357-413g Cp / kg,23.9和10.6-35.8g醚提取物(ee),69和218-251g中性洗涤剂纤维(ndf)/千克和17.6和17.9-18.1 MJ GE / kg。除了色氨酸外,SBM中的赖氨酸,苏氨酸和蛋氨酸等必需AA的CSID在SBM中较大(P <0.05),除了色氨酸外。赖氨酸,苏氨酸和甲硫氨酸的Csid在CM样品中不同(P <0.05),赖氨酸的0.84-0.88,苏氨酸为0.82-0.86,蛋氨酸为0.89-0.92。能量的Catt范围为0.753-0.788,并且预测的NE值范围为CM样品中的7.56-7.97 MJ / kg。总葡糖苷含量范围为1.2-7.6μmol/ g,并且具有5cm样品的值,但不具有5cm样品的值(r = - 0.390; p = 0.013),但不用aa的csid。总之,在加拿大西部加工的CM样品在Cp和EE含量中变化,但AA的CSID可以微小地变化。测量的DE和预测的NE值接近NRC(2012),但在INRA数据库(Sauvant等,2004)中大于菜籽粕的值,表明饮食制定的数据库选择。

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