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Effects of Feed Ingredients with Different Protein-to-Fat Ratios on Growth, Slaughter Performance and Fat Deposition of Small-Tail Han Lambs.

Qin LiGuishan XuDong YangFanlin KongJianxin ZhangTao MaQiyu Diao
Published in: Animals : an open access journal from MDPI (2024)
The purpose of this study was to investigate the effects of feed ingredients with different protein-to-fat ratios on growth, slaughter performance and meat quality of Small-Tail Han lambs. Forty-five Small-Tail Han lambs (♂) (BW = 34.00 ± 2.5 kg, age = 120 ± 9 d) were randomly divided into groups with three different experimental treatments: (1) PF 5, with the ratio of protein to fat (CP:EE) of 50 to 5; (2) PF10, CP: EE = 50:10; (3) PF20, CP: EE = 50:20. Each treatment group had 15 lambs, and each sheep was a repeat. This experiment lasted for 65 days, with feed intake recorded daily, and animals being weighed on days 0, 30, and 65. At the conclusion of the experiment, eight lambs from each group were slaughtered to assess slaughter performance and meat quality. The results showed that the average daily gain (ADG) of the three groups were 315.27, 370.15 and 319.42 g/d, respectively. The PF10 group had the highest ADG (370.15 g) ( p < 0.05). Forestomach weights (1216.88 g) of the PF10 group were significantly higher than those of the other groups ( p < 0.05). There were no differences ( p > 0.05) in fat percentages in various parts of body among treatments. Feed conversion of the PF10 group was higher ( p < 0.05) than that of PF 5 and PF 20 groups. Furthermore, the PF10 group had a higher ( p > 0.05) carcass weight and slaughter rate and there were few differences between the other groups in terms of dry matter intake, meat quality, organ weight, and fat deposition ( p > 0.05). The protein-energy supplement with protein-to-fat ratio, PF10 appeared to be more desirable to promote the growth and development in Small-Tail Han Lambs.
Keyphrases
  • adipose tissue
  • fatty acid
  • protein protein
  • physical activity
  • body mass index
  • binding protein
  • amino acid
  • weight loss
  • quality improvement
  • small molecule
  • combination therapy
  • replacement therapy