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猪的补偿性生长反应:对生长性能、胴体和肌肉水平增重组成以及肉质的影响。

Compensatory growth response in pigs: effects on growth performance, composition of weight gain at carcass and muscle levels, and meat quality.

作者信息

Heyer A, Lebret B

机构信息

INRA, UMR 1079, Systèmes d'Elevage et Nutrition Animale et Humaine, F-35590 Saint-Gilles, France.

出版信息

J Anim Sci. 2007 Mar;85(3):769-78. doi: 10.2527/jas.2006-164.

Abstract

A restriction/realimentation feeding strategy was applied to pigs to increase the age at market weight and final ADG, modify protein and lipid deposition rates at carcass and muscle levels, and thereby improve eating quality of the pork. A total of 126 Duroc x (Large White x Landrace) pigs (females and castrated males) were used. At the average BW of 30 kg, within litter and sex, pairs of littermates (blocked by BW) were randomly assigned to ad libitum (AL) feeding during growing (30 to 70 kg of BW) and finishing (70 to 110 kg of BW) periods (AL, n = 56), or restricted feeding at 65% of the ADFI of the AL pigs, on a BW basis, during the growing period and AL feeding during finishing (compensatory growth, CG; n = 56). In each feeding regimen, 15 pigs were slaughtered at 70 kg of BW, and 41 pigs were slaughtered at 110 kg of BW. Additionally, 14 pigs were slaughtered at 30 kg of BW to calculate tissue deposition rates. The CG pigs showed decreased ADG (-35%, P = 0.001) during growing but increased ADG (+13%, P = 0.001) during finishing (i.e., compensatory growth) due to greater (P = 0.001) ADFI and G:F. Hence, CG pigs were 19 d older at 110 kg of BW than AL pigs. The CG pigs were leaner at 70 kg of BW than AL (e.g., 11.7 vs. 13.5 mm of average backfat thickness for CG and AL pigs, respectively, P = 0.023), whereas the differences were reduced at 110 kg of BW (20.6 vs. 21.0 mm of average backfat thickness for CG and AL pigs, respectively, P = 0.536). At 70 kg of BW, intramuscular fat (IMF) content of LM did not differ between CG and AL pigs (1.25 vs. 1.49%, respectively, P = 0.118), whereas CG pigs had less IMF in LM at 110 kg of BW (2.19 vs. 2.53% for CG and AL pigs, respectively, P = 0.034). Feeding regimen influenced the composition of weight gain. From 30 to 70 kg of BW, feed restriction reduced (P = 0.001) lean and adipose tissue deposition at the carcass level and protein and lipid deposition at the muscle level. From 70 to 110 kg of BW, the CG feeding strategy increased (P = 0.016) deposition of adipose but not of lean tissue at the carcass level. However, lipid and protein deposition at the muscle level were not affected. Thus, realimentation promoted deposition of subcutaneous fat over IMF. Feeding regimen hardly affected technological meat quality at 110 kg of BW. The CG feeding strategy decreased (P = 0.014) the meat juiciness score in relation to the decreased IMF but did not influence other sensory traits. Elevated IMF content and improved pork quality might be achieved by modifying the onset or duration of the restriction and realimentation periods.

摘要

对猪采用限饲/再饲喂策略,以提高达到上市体重时的年龄和最终平均日增重,改变胴体和肌肉水平的蛋白质和脂肪沉积率,从而改善猪肉的食用品质。共使用了126头杜洛克×(大白猪×长白猪)猪(雌性和去势雄性)。在平均体重30 kg时,按窝和性别,将同窝仔猪(按体重分组)随机分为两组,一组在生长阶段(体重30至70 kg)和育肥阶段(体重70至110 kg)自由采食(AL,n = 56),另一组在生长阶段按体重基础上以AL组猪的平均日采食量的65%进行限饲,育肥阶段自由采食(补偿生长,CG;n = 56)。在每种饲喂方案中,15头猪在体重70 kg时屠宰,41头猪在体重110 kg时屠宰。此外,14头猪在体重30 kg时屠宰以计算组织沉积率。CG组猪在生长阶段平均日增重降低(-35%,P = 0.001),但在育肥阶段平均日增重增加(+13%,P = 0.001)(即补偿生长),这是由于平均日采食量和料重比更高(P = 0.001)。因此,CG组猪在体重110 kg时比AL组猪大19天。CG组猪在体重70 kg时比AL组猪更瘦(例如,CG组和AL组猪的平均背膘厚度分别为11.7和13.5 mm,P = 0.023),而在体重110 kg时差异减小(CG组和AL组猪的平均背膘厚度分别为20.6和21.0 mm,P = 0.536)。在体重70 kg时,CG组和AL组猪的腰大肌肌内脂肪(IMF)含量无差异(分别为1.25%和1.49%,P = 0.118),而在体重110 kg时,CG组猪腰大肌的IMF含量较低(CG组和AL组猪分别为2.19%和2.53%,P = 0.034)。饲喂方案影响增重的组成。从体重30至70 kg,限饲降低了(P = 0.001)胴体水平的瘦肉和脂肪组织沉积以及肌肉水平的蛋白质和脂肪沉积。从体重70至110 kg,CG饲喂策略增加了(P = 0.016)胴体水平的脂肪组织沉积,但未增加瘦肉组织沉积。然而,肌肉水平的脂肪和蛋白质沉积未受影响。因此,再饲喂促进了皮下脂肪而非IMF的沉积。饲喂方案对体重110 kg时的肉品加工品质影响不大。CG饲喂策略因IMF降低使肉的多汁性评分降低(P = 0.014),但不影响其他感官特性。通过改变限饲和再饲喂期的开始时间或持续时间,可能实现提高IMF含量和改善猪肉品质的目的。

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