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article · Journal of Animal Science

PSXI-29 Effects of feed restriction on blood constituent concentrations in hair sheep

Abstract

Abstract Forty-six Dorper, 47 Katahdin, and 41 St. Croix female sheep (initial body weight of 62, 62, and 51 kg, respectively, SEM=1.43; 3.8±0.18 yr of age) from 45 commercial farms in Midwest, Northwest, Southeast, and central Texas regions of the United States were used to evaluate effects of feed restriction on concentrations of blood constituents. A 50% concentrate pelleted diet was fed, with the amount varied in the first 4 wk to achieve stable BW. The amount of feed offered in wk 5–10 was set at 55% of that consumed in wk 3–4. Blood was sampled at the end of wk 3, 4, 6, 8, and 10, with constituent levels in wk 4 and 10 assumed relevant to conditions with different maintenance energy requirements (i.e., fed at maintenance and approximately 43% lower with restricted intake). There were some differences among breeds such as ones based on samples collected at all times in urea nitrogen (14.0, 13.7, and 15.4 mg/dl; SEM=0.31) and creatinine (0.945, 0.836, and 0.809 mg/dl for Dorper, Katahdin, and St. Croix, respectively; SEM=0.0253) but relatively few among regions and only one interaction between week and breed or region. There was a trend for a difference (P = 0.051) between wk 4 and 10 in the concentration of glucose (51.9 and 54.2 mg/dl; SEM=0.90), and there were differences (P < 0.05) in levels of lactate (23.9 and 20.3 mg/dl; SEM=0.89), urea N (16.4 and 13.0 mg/dl; SEM= 0.25), creatinine (0.808 and 0.919 mg/dl; SEM=0.0165), triglycerides (31.8 and 25.5 mg/dl; SEM=0.63), cholesterol (67.5 and 74.7 mg/dl; SEM=1.66), and cortisol (10.55 and 8.31 ng/ml for wk 4 and 10, respectively; SEM=0.0542). In conclusion, similar responses of different hair sheep breeds in blood constituent levels to feed restriction is in accordance with comparable effects on body weight and the maintenance energy requirement previously reported.

Research topics

  • Genetic and phenotypic traits in livestock
  • Animal Nutrition and Physiology
  • Selenium in Biological Systems

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DOI: 10.1093/jas/skab235.858

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