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Effects of increasing supplemental dietary Zn concentration on growth performance and carcass characteristics in finishing steers fed ractopamine hydrochloride

机译:日粮中补充锌的添加量对盐酸莱克多巴胺肥育肥牛的生长性能和car体特性的影响

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摘要

Angus-cross steers (n = 288; 427 ± 0.4 kg) were utilized in a finishing study to evaluate the influence of increasing dietary Zn concentration on growth performance and carcass characteristics of steers fed ractopamine hydrochloride (>RAC). In a randomized complete block design, steers were blocked by weight (6 steers/pen) and fed a dry-rolled corn-based diet for 79 d containing no supplemental Zn (>CON; n = 8), 60 mg Zn/kg from ZnSO4 and no supplemental Zn-amino acid complex (>ZnAA; >ZnAA0; n = 8) or ZnAA0 diet supplemented with 60 (>ZnAA60; n = 8), 90 (>ZnAA90; n = 7), 120 (>ZnAA120; n = 8), or 150 (>ZnAA150; n = 8) mg Zn/kg DM from ZnAA. Thirty-one days prior to harvest (day 48 of study) all steers began receiving RAC at 300 mg⋅steer–1⋅d–1. This study was organized as 2 groups (>GRP) of steers and groups were stagger started so that GRP1 started and ended 2 wk before GRP2. Pen was the experimental unit, and the statistical model included the fixed effects of treatment and block nested within GRP. Three a priori single degree of freedom contrasts were developed: linear and quadratic effects of ZnAA supplementation (ZnAA0, ZnAA60, ZnAA90, ZnAA120, and ZnAA150), and CON vs. Zn (CON vs. ZnAA0, ZnAA60, ZnAA90, ZnAA120, and ZnAA150). Dietary Zn concentration did not affect growth performance prior to RAC supplementation (P ≥ 0.17). During the RAC-period ADG and DMI were not affected by dietary Zn (P ≥ 0.16), while there was a linear effect of dietary Zn supplementation to decrease G:F (P = 0.04). Marbling scores were greatest in CON steers (P = 0.03). Liver Cu (day 45 and 80) and meat Cu (harvest) concentrations were greater in CON steers relative to Zn-supplemented steers (P ≤ 0.05), and plasma Zn linearly increased as dietary Zn increased (P = 0.007). Warner-Bratzler shear force was not different among treatments (P ≥ 0.25), and meat total collagen was quadratically affected by dietary Zn supplementation (P ≤ 0.002) where ZnAA0 was greatest. Overall, there was no effect of dietary Zn concentration on growth performance of RAC-supplemented steers in this study.
机译:在整理研究中使用了安格斯杂交ste牛皮(n = 288; 427±0.4 kg)来评估日粮锌浓度增加对饲喂盐酸莱克多巴胺(> RAC )的ste牛皮的生长性能和car体特性的影响。在随机的完全区组设计中,按重量限制ste牛(6 ers /笔),并饲喂不添加锌的干轧玉米基日粮79天(> CON ; n = 8), ZnSO4中60 mg锌/ kg,无补充锌氨基酸复合物(> ZnAA ; > ZnAA0 ; n = 8)或ZnAA0日粮中补充60(> ZnAA60 < / strong>; n = 8),90(> ZnAA90 ; n = 7),120(> ZnAA120 ; n = 8)或150(> ZnAA150 ; n = 8)ZnAA / mg Zn / kg DM。收获前三十一天(研究的第48天),所有公牛开始以300 mg·steer -1 ⋅d -1 的剂量接受RAC。这项研究分为2组(> GRP )ste牛,各组错开开始,因此GRP1在GRP2之前2周开始和结束。 Pen是实验单位,统计模型包括处理的固定效果和GRP中嵌套的块。开发了三个先验的单自由度对比:ZnAA补充剂(ZnAA0,ZnAA60,ZnAA90,ZnAA120和ZnAA150)的线性和二次效应,以及CON与Zn的对比(CON与ZnAA0,ZnAA60,ZnAA90,ZnAA120和ZnAA150 )。补充RAC之前,膳食中的锌浓度不影响生长性能(P≥0.17)。在RAC期间,ADG和DMI不受日粮锌的影响(P≥0.16),而日粮锌的添加对降低G:F有线性作用(P = 0.04)。 CON指导中的大理石花纹得分最高(P = 0.03)。相对于补充锌的ers牛,肝脏中的铜(第45天和第80天)和肉中的铜(收获)浓度更高(P≤0.05),血浆锌随日粮锌的增加而线性增加(P = 0.007)。不同处理之间的Warner-Bratzler剪切力没有差异(P≥0.25),并且饮食中的Zn补充(P≤0.002)对肉类总胶原的二次影响,其中ZnAA0最大。总体而言,在这项研究中,饮食中锌的浓度对补充RAC的公牛的生长性能没有影响。

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