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Metabolic and genetic regulation in adipose tissue of Angus and Wagyu steers raised to United States and Japanese endpoints.

机译:安格斯和和牛ste牛脂肪组织中的代谢和遗传调控提高到美国和日本的终点。

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摘要

We hypothesized that carcass and fatty acid composition of Angus and Japanese Black (Wagyu) steers would not differ if the steers were fed to a typical U.S. final weight, but that Wagyu steers fed to a typical Japanese endpoint body weight would have greater quality grades and softer fat than Angus steers. Sixteen Angus and 16 Wagyu 8-month-old, weaned steers were assigned to a corn-based diet for 8 or 16 months (n = 4 per breed type and time) or hay-based diet for 12 or 20 months (n = 4 per breed type and time) in a 2 x 2 x 2 factorial arrangement. USDA yield grade was greater at the Japanese endpoint than at the U.S. endpoint in Angus steers (breed x endpoint, P = 0.03). Intramuscular (i.m.) lipid continued to increase to over 20% in the Wagyu steers (P = 0.05), but attained a plateau (14.7%) by 16 months on feed in the Angus steers. These results confirm that Wagyu cattle must be raised to greater physiological maturity before they differ from Angus cattle in M. longissimus thoracis i.m. lipid concentration. Subcutaneous adipose tissue concentrations of oleic (18:1n-9) was greater in Wagyu steers than in Angus steers (P = 0.05). All monounsaturated fatty acids (MUFA) increased between the U.S. and Japanese endpoint, whereas slip points of lipids in s.c. adipose tissue were 10°C lower in Japanese endpoint steers than in U.S. endpoint steers (P = 0.01). Angus adipose tissue exhibited peak SCD enzyme activity at 16 months (corn-based diet) but activity in Wagyu adipose tissue was greatest at 20 months (hay-based diet) (breed x diet x endpoint, P = 0.08). However, SCD gene expression in Angus adipose tissue was maximal at 12 months (hay diet), whereas Wagyu adipose tissue had peak expression at 16 months (corn diet) (P 0.03).; Trans-10, cis-12 CLA has been reported as a potent inhibitor of adipocyte differentiation. CLA (40 muM) strongly decreased SCD and PPARgamma expression in bovine adipocytes, even in the presence of 5 mM arginine. It can be concluded that arginine up regulates bovine preadipocyte differentiation, and CLA antagonizes this effect.
机译:我们假设,如果将to牛皮饲喂到典型的美国最终体重,则安格斯和日本黑(和牛)ste牛皮的car体和脂肪酸组成不会有差异,但如果饲喂到典型的日本终点体重的和牛ers牛皮,其品质等级和脂肪比安格斯牛软。将16个8个月大的安格斯和16个和牛的断奶ste牛皮分配给玉米饲喂8或16个月(每品种和时间n = 4)或干草饲喂12或20个月(n = 4)每个品种类型和时间)以2 x 2 x 2析因排列。在安格斯ste牛中,日本终点的美国农业部收益等级高于美国终点(品种x终点,P = 0.03)。和牛ste牛的肌内(i.m.)脂质继续增加至20%以上(P = 0.05),但安格斯牛ers饲16个月时达到了平稳期(14.7%)。这些结果证实和牛在与长毛比分枝杆菌m。longissimus thoracis i.m中的安格斯牛不同之前必须提高其生理成熟度。脂质浓度。和牛ste牛皮下脂肪的皮下脂肪组织浓度(18:1n-9)高于安格斯牛ste皮(P = 0.05)。在美国和日本终点之间,所有单不饱和脂肪酸(MUFA)均增加,而在s.c.日本终点ste牛的脂肪组织比美国终点ste牛的脂肪组织低10°C(P = 0.01)。安格斯脂肪组织在16个月(以玉米为基础的日粮)中表现出最高的SCD酶活性,而和牛脂肪组织的活性在20个月(以干草为基础的日粮)中最大(品种x饮食x终点,P = 0.08)。然而,在安格斯脂肪组织中,SCD基因表达在12个月时最高(干草饮食),而和牛脂肪组织在16个月时(玉米饮食)表达最高(P <0.03)。据报道,Trans-10,cis-12 CLA是有效的脂肪细胞分化抑制剂。即使存在5 mM的精氨酸,CLA(40μM)也会强烈降低牛脂肪细胞中SCD和PPARγ的表达。可以得出结论,精氨酸上调了牛前脂肪细胞的分化,而CLA拮抗了这一作用。

著录项

  • 作者

    Chung, Ki Yong.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Cell.; Biology Animal Physiology.; Agriculture Animal Culture and Nutrition.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;生理学;饲料;
  • 关键词

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