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火鸡的生长 2. 身体成分和异速生长关系。

The growth of turkeys 2. Body components and allometric relationships.

机构信息

School of Agricultural, Earth and Environmental Sciences, University of KwaZulu-Natal , Scottsville , South Africa.

University of Life Sciences Prague , Prague , Czech Republic.

出版信息

Br Poult Sci. 2019 Oct;60(5):548-553. doi: 10.1080/00071668.2019.1622077. Epub 2019 Jun 24.

Abstract
  1. The relationships between the main components of the body and body protein among males and females of BUT 6 (BUT) and Hybrid Converter (HYB) turkey strains were examined. 2. The weights of breast meat, breast skin, drumstick meat, drumstick skin, thigh meat, thigh skin and wing-plus-skin as well as the head, neck, feet, blood, heart, liver and gizzard were measured at different stages of growth after which all components of each bird were minced together in order to determine the feather-free body protein weight of each bird sampled. Using the weights of the components and the protein content of each bird the allometric relationships between the components and body protein were determined and then compared for each strain x sex combination. 3. By excluding the breast weights at day-old and at 7 d, the remaining points produced an acceptable allometric relationship (R = 0.992). Thigh weight could be predicted for all strain x sex combinations using one allometric equation, as could drumstick skin weight. Breast and thigh skin weights differed between males and females. Females of the HYB strain exhibited heavier drumstick and wing-plus-skin weights at a given body protein weight than the other three strain x sex combinations. These differences in both the constant term and regression coefficient in the allometric equations between genotypes are probably due to differences in the amount of lipid that is deposited in these tissues. 4. Sexes differed in the allometric relationships for head, feet, heart and liver, while breeds differed in gizzard weight. A common relationship between the four genotypes could be used to predict the weight of blood in the carcass. 5. The allometric equations fitted to the data in this trial enable the accurate prediction of the weights of the different physical components given the weight of body protein.
摘要
  1. 本研究旨在探究雄性和雌性 BUT 6(BUT)和 Hybrid Converter(HYB)火鸡品系各主要体组成部分与体蛋白之间的关系。

  2. 在生长的不同阶段,测量了胸肉、胸皮、鸡腿肉、鸡腿皮、大腿肉、大腿皮和翅膀加皮、头、颈、脚、血、心、肝和肫的重量,然后将每只鸟的所有成分一起切碎,以确定取样每只鸟的无羽体蛋白重量。利用各成分的重量和每只鸟的蛋白含量,确定了各成分与体蛋白之间的比例关系,并对每个品系 x 性别组合进行了比较。

  3. 通过排除 1 日龄和 7 日龄的胸重,其余数据点得出了可接受的比例关系(R = 0.992)。可以使用一个比例关系方程预测所有品系 x 性别组合的大腿重量,也可以预测鸡腿皮重量。胸重和大腿皮重在雄性和雌性之间存在差异。给定体蛋白重量,HYB 品系的雌性鸡腿和翅膀加皮的重量比其他三个品系 x 性别组合都要重。这些基因型之间的比例关系中常数项和回归系数的差异可能是由于这些组织中沉积的脂质量不同所致。

  4. 性别在头、脚、心和肝的比例关系方面存在差异,而品种在肫的重量方面存在差异。可以使用四种基因型之间的共同关系来预测胴体血液的重量。

  5. 本试验中拟合的数据的比例关系方程可以准确预测给定体蛋白重量时不同物理成分的重量。

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