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281 Effects of feeding endophyte-infected tall fescue seed to Angus steers on ergovaline concentration lipid oxidation and skeletal metmyoglobin reductase activity

机译:281饲喂Endophyte-Cerved Tall Fescue种子对Ergovaline浓度脂质氧化和骨髓甲壳素还原酶活性的Angus Steers的影响

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摘要

This study was aimed to determine the ergovaline concentration, lipid oxidation, and skeletal metmyoglobin reductase activity in Angus steers fed with endophyte-infected tall fescue seed. Animals were blocked into light (n = 4, 205.5 ± 7.4 kg), medium (n = 5, 231.3 ± 8.2 kg), and heavy (n = 3, 272.7 ± 8.4 kg) groups and randomly assigned to either a KY31 seed treatment (6796 ppb ergovaline; 20 µg/kg BW; E+; n = 6) or a KY32 control (< 100 ppb; E-; n = 6) by Calan® gates during a 70-d feeding period from June to August of 2015 (period 1), followed by a 150-d resting period and another 64-d feeding period from January to March of 2016 (period 2). In both periods, there was a 2-way treatment × time interaction for ergovaline concentration in blood (P = 0.002 and 0.022, respectively), with E+ steers having 0.59 to 0.95 nM more than E- steers on d 3 (P < 0.001). In period 1, TBARS values were greater in blood serum of E+ steers than in that of E- steers (6.56 vs. 2.56 µM MDA; P = 0.048) and an overall increase in MDA from d 0 (2.39 µM) to d 3 (7.59 µM) was also observed (P = 0.049). At slaughter, E+ steers had a blood TBARS value of 2.27 µM, greater than 1.15 µM in E- steers (P = 0.013). In postmortem muscle, the TBARS value was 0.68 and 0.77 µg/kg for E- and E+ steers, respectively (P = 0.239). There was no effect of endophyte-infected tall fescue seed on metmyoglobin reductase in longissimus thoracis (4.82 µM/min/g in E- muscle vs. 3.93 µM/min/g in E+ muscle; P = 0.484). Therefore, feeding endophyte-infected tall fescue seed increased ergovaline concentration and oxidative stress in the blood of Angus steers.
机译:本研究旨在确定用内心感染的高杂草种子饲喂的Angus Steers中的Ergovaline浓度,脂质氧化和骨质型甲壳素还原酶活性。将动物被封闭成光(n = 4,205.5±7.4kg),中等(n = 5,231.3±8.2 kg),重(n = 3,272.7±8.4 kg)组,随机分配给Ky31种子处理(6796 ppb ergovaline;20μg/ kg bw; e +; n = 6)或者在2015年6月至8月8日的70-d喂养期间由Calan®门(<100 ppb; e-; n = 6) (第1期),其次是150-D休息期和2016年1月至2016年3月的其他64-D喂养期(第2期)。在两个时期,在血液中的Ergovaline浓度(P = 0.002和0.022分别)存在双向处理×时间相互作用,E +转位在D 3上的e-Steers具有0.59至0.95nm的0.59至0.95nm(p <0.001) 。在第1期间,在E +操纵子的血清中的TBARs值比在电子器皿的血清中(6.56vs.2.56μm; p = 0.048),并且MDA的总体增加(2.39μm)至d 3(还观察到7.59μm)(P = 0.049)。在屠宰时,E + Steers的血液TBARS值为2.27μm,在电子操舵中大于1.15μm(P = 0.013)。在后肌肉中,对于E和E + Steers,TBARS值为0.68和0.77μg/ kg(p = 0.239)。 Hegissimus Thoracis中的甲状腺蛋白还原酶对甲状腺蛋白还原酶(4.82μm/ min / g在肌肉中的4.93μm/ min / g中的e +肌肉中的4.93μm/ min; p = 0.484)没有作用。因此,喂养内胚层的高荧光血清种子增加了Angus Steers血液中的Ergovaline浓度和氧化应激。

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