首页> 美国卫生研究院文献>Translational Animal Science >Effects of rumen-protected long-chain fatty acid supplementation during the finishing phase of beef steers on live performance carcass characteristics beef quality and serum fatty acid profile
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Effects of rumen-protected long-chain fatty acid supplementation during the finishing phase of beef steers on live performance carcass characteristics beef quality and serum fatty acid profile

机译:牛犊育肥过程中添加瘤胃保护的长链脂肪酸对生猪生产性能car体特性牛肉品质和血清脂肪酸谱的影响

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摘要

The effect of a rumen-protected long-chain fatty acid (LCFA) supplement on live performance, meat quality, blood serum fatty acid profile, and predicted carcass composition was evaluated in this study. Angus steer calves ( = 99) were fed a low energy diet for 77 d prior to finishing. Prior to study initiation, the steers were separated into 12 pens with eight or nine steers per pen. Steers were transitioned from the low energy forage–based diet to a high concentrate diet containing high moisture ear corn, corn silage, dry rolled corn, soybean meal, and a liquid supplement containing monensin across 21 d. Megalac-R (RPFA) was fed to six pens at 2% of the diet dry matter. Control pens (CON; = 6) received an additional 2% of diet dry matter as dry rolled corn and soybean meal. The final finishing diet net energy for gain (NE ) was 1.20 and 1.19 mega calories·kg of dry matter (DM) for RPFA and CON treatments, respectively. Steers were weighed every 28 d. Growth performance data including average daily gain (ADG), gain to feed ratio (G:F), and DM intake (DMI) were calculated as both monthly and overall data. After a 147-d finishing phase, steers were transported to a commercial abattoir for slaughter. After a 28-h chilling period, carcass data were obtained by trained personnel. Final live weights were greater ( = 0.01) for RPFA than CON cattle. Overall ADG and overall G:F was increased ( 0.02; = 0.01, respectively) for RPFA cattle. Ribeye area, backfat thickness, kidney pelvic heart fat, marbling score, and yield grade did not differ ( > 0.05) between treatments. Predicted percent carcass fat was increased for RPFA cattle ( = 0.05). Conversely, predicted percent carcass protein ( = 0.07) and bone ( = 0.06) tended to be greater for CON cattle. Long-chain fatty acid supplementation during the finishing phase did not increase marbling scores of the steers in this study but did increase final live weight, HCW, and predicted total body fat. These results suggest that RPFA supplementation has the potential to increase adipose tissue development. However, it is likely that animal age during supplementation and duration of supplementation impact the effect RPFAs have on carcass characteristics.
机译:在这项研究中评估了瘤胃保护的长链脂肪酸(LCFA)补充剂对生猪性能,肉品质,血清脂肪酸谱和预测profile体组成的影响。在完成前,将低能量饮食饲喂安格斯牛(= 99)77天。在开始研究之前,将ers牛分成12头,每头八或九头。 across牛在21 d内从低能量的饲草饲料过渡到了高浓缩饲料,其中包括高水分的玉米穗,玉米青贮饲料,干轧制玉米,豆粕和含有莫能菌素的液体补充剂。将Megalac-R(RPFA)以日粮干物质的2%喂入六只围栏。对照围栏(CON; = 6)以干轧玉米粉和豆粕的形式另外添加了2%的饮食干物质。对于RPFA和CON处理,最终最终饮食的净增能量(NE)为1.20和1.19兆卡路里·千克干物质(DM)。 ers牛每28天称重一次。包括平均日增重(ADG),增重饲料比(G:F)和干物质摄入量(DMI)在内的生长表现数据均按月和总体数据计算。经过147天的育肥阶段,将ers牛皮运输到商业屠宰场进行屠宰。冷藏28小时后,由训练有素的人员获取car体数据。 RPFA的最终活重比CON牛大(= 0.01)。 RPFA牛的总ADG和总G:F增加(分别为0.02; = 0.01)。两次治疗之间的眼睑面积,背脂肪厚度,肾盂骨脂肪,大理石花纹得分和屈服等级没有差异(> 0.05)。 RPFA牛的car体脂肪预测百分比增加(= 0.05)。相反,CON牛的predicted体蛋白质(= 0.07)和骨骼(= 0.06)的预测百分比往往更高。在本研究中,在肥育阶段添加长链脂肪酸不会增加mar牛皮的大理石花纹分数,但会增加最终活体重,HCW和预测的总体脂。这些结果表明补充RPFA具有增加脂肪组织发育的潜力。但是,补充期间和补充期间的动物年龄可能会影响RPFA对car体特征的影响。

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