J. Anim Sci.
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J. Anim. Sci. 2002. 80:2996-3004
© 2002 American Society of Animal Science

Growth, carcass characteristics, muscle conjugated linoleic acid (CLA) content, and response to intravenous glucose challenge in high percentage Wagyu, Wagyu x Limousin, and Limousin steers fed sunflower oil-containing diets1,2

P. S. Mir1,3, Z. Mir*, P. S. Kuber{dagger}, C. T. Gaskins{dagger}, E. L. Martin{dagger}, M. V. Dodson{dagger}, J. A. Elias Calles{ddagger}, K. A. Johnson{dagger}, J. R. Busboom{dagger}, A. J. Wood{ddagger}, G. J. Pittenger§ and J. J. Reeves{dagger}

* Agriculture and Agri-Food Canada Research Centre, P.O. Box 3000, Lethbridge, AB, T1J 4B1; and {dagger} Department of Animal Sciences, Washington State University, Pullman 99164-6351; and {ddagger} Heartbrand Cattle Company, Harwood, TX 78632; and and § Blue Rock Cattle Company, Ellensburg, WA 98926

3 Correspondence:
5403 1st Avenue South (phone: 403-317-2228; fax: 403-382-3156; E-mail:
mirp{at}em.agr.ca).

The effect of breed and diet on insulin response to glucose challenge and its relation to intramuscular fat deposition was determined in 36 steers with 12 each of greater than 87% Wagyu (referred to as Wagyu), Wagyu x Limousin, and Limousin breeds. Weaned steers were blocked by weight into heavy, medium, and light calves and placed in six pens with two pens per weight type and with two steers of each breed per pen. Three pens with steers from each weight class were fed backgrounding and finishing diets for 259 d, while the other three pens were fed the same diets where 6% of the barley grain was replaced with sunflower oil. Prior to initiation of the finishing phase of the study the intravenous glucose tolerance test (IVGTT) was conducted in all steers. Once steers were judged as carrying adequate 12th-rib fat, based on weight and days on feed, they were harvested and graded and samples of the longissimus muscle were procured for determination of fat content and fatty acid composition. Dietary oil improved (P = 0.011; 0.06) ADG and feed conversion efficiency of steers during the latter part of backgrounding and only ADG during early part of the finishing period. Generally percent kidney, pelvic, and heart fat was the only adiposity assessment increased (P = 0.003) by dietary oil. The IVGTT results indicated that insulin response to intravenous glucose was lower in Limousin steers than in Wagyu steers. Dietary oil decreased (P = 0.052) fasting plasma insulin concentration in Wagyu steers compared with Limousin steers. The correlation coefficients among the IVGTT measures and intramuscular fat content or marbling score were less than 0.4, and only a negative trend existed between fasting insulin and USDA marbling scores. However, the carcasses of the Wagyu steers graded US Choice, and 66% of the Wagyu carcasses graded US Prime, which were substantially better than the quality grades obtained for the carcasses from the other breed types. Dietary oil did not affect muscle fat content but increased (P = 0.01) conjugated linoleic acid (CLA) concentrations by 339%. Results indicated that IVGTT measures were not appropriate indices of marbling potential in cattle and that dietary oil can enhance CLA content of beef.

Key Words: Carcass Quality • Conjugated Linoleic Acid • Dietary Fat • Glucose • Insulin




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