体重和类固醇植入物对饲养牛的动物生长性能、血清代谢产物和肺动脉压的影响

T. Vogel, J. Neary, Z. Smith, B. Johnson
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引用次数: 0

摘要

研究目的是评估植入和类固醇植入物给药时受体重影响的公牛生长性能、血清代谢产物反应、胴体特征和肺动脉压。在一项完全随机设计的实验中,杂交公牛(n=20)被用于2×2析因的治疗安排,因素包括:体重:轻(L)或重(H)和植入物:非植入物(NoIMP)或植入物(IMP),公牛作为所有分析的实验单位。L和H牛的初始重量分别为398±27.6和547±25.2kg。植入的公牛在第0天接受末端植入物(200 mg醋酸trenbolone和20 mg雌二醇-17β;Revalor-200;Merck Animal Health,Madison,NJ)。处理组内的牛被安置在普通围栏内(n=5头公牛/围栏)。在第0、14、35、70和104天采集体重、血样和肺动脉压。每天给牛喂食一次普通饮食,以提供随意的饲料。精加工日粮中CP含量为13.3%(DM基础),NEm含量为2.13 Mcal/kg,NEg含量为1.45 Mcal/kg。使用SAS 9.4(SAS Inst.股份有限公司,Cary,NC)的混合程序分析生长性能(体重和ADG)和胴体性状。血清代谢物作为一段时间的重复测量进行分析,以天为重复测量。在所有分析中,在第70天之后,NoIMP与IMP牛的ADG中观察到α水平0.05(1.21vs.1.01±0.16kg;P=0.38)。血清尿素氮浓度降低(P 0.49)。该研究重申了植入对牛的动物生长性能和胴体特性的影响。此外,BW升高会导致肺动脉压升高,这可能会增加右侧心力衰竭的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Body Weight and Steroidal Implants Impact Animal Growth Performance, Sera Metabolites, and Pulmonary Arterial Pressure in Feedlot Cattle
The study objective was to evaluate steer growth performance, sera metabolite responses, carcass characteristics, and pulmonary arterial pressure as affected by body weight at time of implantation and steroidal implant administration. Crossbred steers (n = 20) were used in a 2 × 2 factorial arrangement of treatments in a completely randomized design experiment, Factors included: body weight: light (L), or heavy (H) and implant: Non-implanted (NoIMP), or Implanted (IMP) with steer serving as the experimental unit for all analyses. Initial weights for L and H steers were 398 ± 27.6 and 547 ± 25.2 kg, respectively. Implanted steers received a terminal implant (200 mg trenbolone acetate and 20 mg estradiol-17β; Revalor-200; Merck Animal Health, Madison, NJ) on d 0. Cattle within treatments were group housed in common pens (n = 5 steers/pen). Bodyweight, blood samples, and pulmonary arterial pressure were collected on d 0, 14, 35, 70 and 104. Cattle were fed a common diet once daily to provide ad libitum access to feed. The finishing diet contained (DM basis) 13.3% CP, 2.13 Mcal/kg NEm, and 1.45 Mcal/kg NEg. Growth performance (body weight and ADG) and carcass traits were analyzed using the MIXED procedure of SAS 9.4 (SAS Inst. Inc., Cary, NC). Sera metabolites were analyzed as repeated measures over time, with day as the repeated measure. For all analyses, α level 0.05) in ADG were observed in NoIMP vs. IMP cattle beyond d 70 (1.21 vs. 1.01 ± 0.16 kg; P = 0.38). Sera urea-N concentrations were decreased (P 0.49). The study reaffirms the effects of implanting on animal growth performance and carcass characteristics in cattle. In addition, elevated BW leads to increased pulmonary arterial pressures which may increase the risk of right-sided heart failure.
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