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装运前预处理以及注射抗氧化微量元素(铜、锰、硒、锌)和维生素(A、E)对断奶肉牛血浆代谢物和激素浓度及生长的影响。

Effect of preshipment preconditioning and injectable antioxidant trace elements (Cu, Mn, Se, Zn) and vitamins (A, E) on plasma metabolite and hormone concentrations and growth in weaned beef cattle.

作者信息

Galarza Esteban M, Lizarraga Raul M, Mattioli Guillermo A, Parker Anthony J, Relling Alejandro E

机构信息

Facultad de Ciencias Veterinarias, Universidad Nacional de La Plata, La Plata, Argentina.

Department of Animal Sciences, The Ohio State University, Wooster, OH, USA.

出版信息

Transl Anim Sci. 2021 Jan 4;5(1):txaa233. doi: 10.1093/tas/txaa233. eCollection 2021 Jan.

Abstract

Weaning and transport represent a high stress time for calves. Preconditioning () by weaning before the transport separate these stressors. The stressors generate oxidative stress, which can be reduced by mineral and vitamin supplementation () with an antioxidant capacity. Our objective was to evaluate the effect of PC and MVS on performance of steers. The experiment used a 2 × 2 factorial arrangement design, considering a 26-d PC treatment from weaning to transport to the feedlot (day 0), and injectable MVS on days -45, -26, and 0. The MVS consisted of Cu, Zn, Mn, Se, vitamin E (0.2, 0.8, 0.2, 0.1, and 1 mg/kg body weight [], respectively), and vitamin A (1,190 IU/kg). Sixty Angus-crossbred steers (186.4 ± 27.6 kg) were randomly assigned to the four treatments (; +; +; +; = 15 per treatment). BW was recorded on days -45, -26, 0, 8, 15, and 29. On day 0, an additional BW was taken 30 min after the 5-h transportation (day 0.5). Between days 0 and 29, dry matter intake () and average daily gain () to DMI ratio () were measured. Between days -26 and 29 plasma concentrations of glucose, nonesterified fatty acids (), cortisol, insulin, total antioxidant status (), and thiobarbituric acid-reactive substances were evaluated. Data were analyzed using the MIXED procedure of SAS with repeated measures, using treatment, time, and treatment × time as fixed effects and steer as a random effect. Between days -26 and 0, there was an interaction of MVS × PC ( ˂ 0.01) for ADG. From days -26 to 0, N+N and N+PC had the greatest and lesser ADG, respectively. On day 0.5, no-PC steers tended to lose BW, whereas the PC steers tended to gain BW ( 0.09). In the period days 0 to 8, there were no differences ( 0.27) in DMI, but the PC steers had greater G:F and ADG ( < 0.01) compared with no-PC steers. Plasma NEFA concentration on day 0 was affected by MVS × PC ( < 0.01) because MVS decreased plasma NEFA concentration in no-PC steers, but it increased in the PC steers. Plasma concentrations of glucose, insulin, and cortisol did not differ among treatments ( ≥ 0.23). There was an MVS × PC interaction ( = 0.09) for TAS on day 0; N+N had the greatest TAS concentrations and MVS+N had the lowest TAS concentrations. In conclusion, a 26-d PC decreased steers BW compared with no-PC steers. The BW loss during PC was not recovered 29 d after feedlot entry. Despite this BW loss, MVS treatment decreased BW loss in the steers allocated to PC treatment on the day of transport.

摘要

断奶和运输对犊牛来说是压力很大的时期。在运输前通过断奶进行预处理可以将这些应激源分开。这些应激源会产生氧化应激,而通过补充具有抗氧化能力的矿物质和维生素可以减轻这种应激。我们的目标是评估预处理(PC)和矿物质维生素补充剂(MVS)对阉牛性能的影响。本实验采用2×2析因设计,考虑从断奶到运输至饲养场(第0天)为期26天的PC处理,以及在第-45、-26和0天注射MVS。MVS包含铜、锌、锰、硒、维生素E(分别为0.2、0.8、0.2、0.1和1毫克/千克体重)以及维生素A(1190国际单位/千克)。60头安格斯杂交阉牛(体重186.4±27.6千克)被随机分配到四种处理组(每组15头)。在第-45、-26、0、8、15和29天记录体重。在第0天,5小时运输后30分钟(第0.5天)额外测量一次体重。在第0天至29天期间,测量干物质摄入量(DMI)和平均日增重(ADG)与DMI的比值(G:F)。在第-26天至29天期间,评估血浆葡萄糖、非酯化脂肪酸(NEFA)、皮质醇、胰岛素、总抗氧化状态(TAS)和硫代巴比妥酸反应性物质的浓度。数据使用SAS的MIXED程序进行重复测量分析,将处理、时间和处理×时间作为固定效应,将阉牛作为随机效应。在第-26天至0天期间,MVS×PC对ADG存在交互作用(P<0.01)。从第-26天至0天,N+N组和N+PC组的ADG分别最大和最小。在第0.5天,未进行预处理的阉牛体重有下降趋势,而进行预处理的阉牛体重有增加趋势(P = 0.09)。在第0天至8天期间,DMI没有差异(P>0.27),但与未进行预处理的阉牛相比,进行预处理的阉牛具有更高的G:F和ADG(P<0.01)。第0天的血浆NEFA浓度受MVS×PC影响(P<0.01),因为MVS降低了未进行预处理的阉牛的血浆NEFA浓度,但增加了进行预处理的阉牛的血浆NEFA浓度。各处理组间血浆葡萄糖、胰岛素和皮质醇浓度没有差异(P≥0.23)。第0天TAS存在MVS×PC交互作用(P = 0.09);N+N组的TAS浓度最高,MVS+N组的TAS浓度最低。总之,与未进行预处理的阉牛相比,26天的预处理使阉牛体重下降。进入饲养场29天后,预处理期间的体重损失没有恢复。尽管有体重损失,但MVS处理减少了运输当天分配到预处理组的阉牛的体重损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f038/7846200/3d80a78aa837/txaa233_fig1.jpg

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