首页> 外文期刊>Journal of Animal Science >Genetic parameters for residual feed intake in growing pigs, with emphasis on genetic relationships with carcass and meat quality traits.
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Genetic parameters for residual feed intake in growing pigs, with emphasis on genetic relationships with carcass and meat quality traits.

机译:生长猪剩余饲料摄入量的遗传参数,重点是与car体和肉质性状的遗传关系。

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Data were collected over the first 4 generations of a divergent selection experiment for residual feed intake of Large White pigs having ad libitum access to feed. This data set was used to obtain estimates of heritability for residual feed intake and genetic correlations (ra) between this trait and growth, carcass, and meat quality traits. Individual feed intake of group-housed animals was measured by single-space electronic feeders. Upward and downward selection lines were maintained contemporarily, with 6 boars and 35 to 40 sows per line and generation. Numbers of records were 793 for residual feed intake (RFI1) of boar candidates for selection issued from first-parity (P1) litters and tested over a fixed BW range (35 to 95 kg) and 657 for residual feed intake (RFI2) and growth, carcass, and meat quality traits of castrated males and females issued from second-parity (P2) litters and tested from 28 to 107 kg of BW. Variance and covariance components were estimated using REML methodology applied to a series of multitrait animal models, which always included the criterion for selection as 1 of the traits. Estimates of heritability for RFI1 and RFI2 were 0.14 +or- 0.03 and 0.24 +or- 0.03, respectively, whereas the estimate of ra between the 2 traits was 0.91 +or- 0.08. Estimates of ra indicated that selection for low residual feed intake has the potential to improve feed conversion ratio and reduce daily feed intake, with minimal correlated effect for ADG of P2 animals. Estimates of ra between RFI2 and body composition traits of P2 animals were positive for traits related to the amount of fat depots (ra = 0.44 +or- 0.16 for carcass backfat thickness) and negative for carcass lean meat content (ra = -0.55 +or- 0.14). There was a tendency for a negative genetic correlation between RFI2 and carcass dressing percent (ra = -0.36 +or- 0.21). Moreover, selection for low residual feed intake is expected, through lower ultimate pH and lighter color, to decrease pork quality (ra = 0.77 +or- 0.14 between RFI2 and a meat quality index intended to predict the ratio of the weight of ham after curing and cooking to the weight of defatted and boneless fresh ham). (c)American Society of Animal Science. All rights reserved.
机译:在自由选择饲料的大型白猪的剩余饲料摄入量的发散选择实验的前4代中收集了数据。该数据集用于获得残留饲料摄入量的遗传力估计值,以及该性状与生长,car体和肉质性状之间的遗传相关性(ra)。用单空间电子喂食器测量成群饲养动物的个体喂食量。同时维持上下选育系,每系和每代育成6头公猪和35至40头母猪。记录数为793,来自第一胎(P1)凋落物的公猪候选的剩余饲料摄入量(RFI1),在固定体重范围(35至95千克)上进行了测试,剩余的饲料摄入量(RFI2)和生长为657产自第二胎(P2)的ter割动物的cast割,雄性和雌性的and体,s体和肉品质性状,测试体重为28至107千克体重。方差和协方差成分是使用REML方法估算的,该方法适用于一系列多性状动物模型,该模型始终包括选择为1个性状的标准。 RFI1和RFI2的遗传力估计分别为0.14±0.03和0.24±0.03,而2个性状之间的ra估计为0.91±0.08。 ra的估计表明,选择低残留饲料摄入量有可能提高饲料转化率并减少每日饲料摄入量,而对P2动物的ADG的相关影响最小。 RFI2和P2动物的身体组成特征之间的ra估计值与脂肪库数量相关的特征为阳性(ra体肥厚的ra = 0.44 +或-0.16),而car体瘦肉含量为负(ra = -0.55 +或) -0.14)。 RFI2和car体敷料百分比之间存在负遗传相关性的趋势(ra = -0.36 +或-0.21)。此外,期望通过较低的最终pH值和较浅的颜色来选择低残留饲料摄入量,从而降低猪肉品质(RFI2与旨在预测腌制后火腿重量比的肉品质指数之间的ra = 0.77 +或-0.14)并煮熟,以达到脱脂和去骨的新鲜火腿的重量。 (c)美国动物科学学会。版权所有。

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