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Combined effect of divergent selection for breast muscle ultimate pH and dietary amino acids on chicken performance, physical activity and meat quality

机译:胸肌最终pH值和饮食氨基酸的发散选择对鸡肉性能,身体活动和肉质的综合影响

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摘要

Responses to changes in dietary Lys and other essential amino acid (AA) concentrations were evaluated in 480 male and female broilers originating from two lines divergently selected for high (pHu+) or low (pHu-) ultimate pH (pHu) of breast muscle. The two genetic lines were fed with two grower isoenergetic diets differing in both true digestible Lys (control=10.2 g/kg and experimental=7.0 g/kg) and amounts of other essential AA calculated in relation to Lys, which were sufficient for the control diet or in excess for the experimental diet. There were six repetitions per treatment. Birds were weighed individually at days 0, 21, 28 and 43. Feed consumption was recorded per pen and feed conversion was calculated over the growing period. The physical activity and walking ability of broilers were recorded during the whole rearing period. Breast and leg yield, and abdominal fat percentage were measured at 43 days of age, as were pHu, color, drip and cooking loss, Warner-Bratzler shear force, and curing-cooking yield of the breast Pectoralis major and pHu of the thigh Sartorius muscle. Divergent selection greatly affected most breast meat quality traits without significantly changing growth rate or feed efficiency. When subjected to a variation in dietary intake of AA, birds from the two genotypes responded in a similar way in terms of animal's growth, feed efficiency, body composition and meat quality traits. Although line and diet did not affect physical or feeding activities of the broilers, a significant effect of line-by-diet interaction was observed on gait score. Contrary to the pHu- birds, the walking ability of pHu+ birds was impaired when fed the control diet that favored growth and breast muscle development and limited storage of carbohydrate in muscle.
机译:在480只雄性和雌性肉鸡中评估了饮食中Lys和其他必需氨基酸(AA)浓度变化的反应,这些肉鸡是从为乳肌的最高(pHu +)或最低(pHu-)终极pH(pHu)而选择的两条品系中获得的。在两个遗传系中饲喂两种生长同等能量日粮,它们的真正可消化Lys(对照= 10.2 g / kg,实验= 7.0 g / kg)和相对于Lys计算的其他必需AA的量都不同,这足以控制饮食或实验饮食过量。每种治疗重复六次。在第0、21、28和43天分别称重鸡只。记录每笔的饲料消耗量,并计算整个生长期的饲料转化率。在整个饲养期间记录肉鸡的体育活动和步行能力。在43日龄时测量乳房和腿的产量以及腹部脂肪百分比,以及pHu,色泽,滴落和蒸煮损失,Warner-Bratzler剪切力以及大胸大胸肌和大腿Sartorius的pHu的熟化率肌肉。不同的选择极大地影响了大多数胸肉的品质特性,而没有显着改变生长速度或饲料效率。当AA的饮食摄入量发生变化时,两种基因型的禽类在动物的生长,饲料效率,身体组成和肉质性状方面的反应相似。尽管品系和饮食不影响肉鸡的体力活动或进食活动,但观察到的逐行饮食相互作用对步态评分有显着影响。与pHu-禽类相反,当喂食有利于生长和胸肌发育以及限制碳水化合物在肌肉中储存的对照饮食时,pHu +禽类的行走能力受到损害。

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