首页> 外文期刊>Journal of animal science >Effect of yearling steer sequence grazing of perennial and annual forages in an integrated crop and livestock system on grazing performance, delayed feedlot entry, finishing performance, carcass measurements, and systems economics
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Effect of yearling steer sequence grazing of perennial and annual forages in an integrated crop and livestock system on grazing performance, delayed feedlot entry, finishing performance, carcass measurements, and systems economics

机译:综合农作物和牲畜系统中多年生和一年生牧草的一岁ste牛顺序放牧对放牧性能,延迟育肥场进入,育肥性能,car体测量和系统经济性的影响

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In a 2-yr study, spring-born yearling steers (n = 144), previously grown to gain 0.454 kg·steer?1·d?1, following weaning in the fall, were stratified by BW and randomly assigned to three retained ownership rearing systems (three replications) in early May. Systems were 1) feedlot (FLT), 2) steers that grazed perennial crested wheatgrass (CWG) and native range (NR) before FLT entry (PST), and 3) steers that grazed perennial CWG and NR, and then field pea–barley (PBLY) mix and unharvested corn (UC) before FLT entry (ANN). The PST and ANN steers grazed 181 d before FLT entry. During grazing, ADG of ANN steers (1.01 ± SE kg/d) and PST steers (0.77 ± SE kg/d) did not differ (P = 0.31). But even though grazing cost per steer was greater (P = 0.002) for ANN vs. PST, grazing cost per kg of gain did not differ (P = 0.82). The ANN forage treatment improved LM area (P = 0.03) and percent i.m. fat (P = 0.001). The length of the finishing period was greatest (P 0.001) for FLT (142 d), intermediate for PST (91 d), and least for ANN (66 d). Steer starting (P = 0.015) and ending finishing BW (P = 0.022) of ANN and PST were greater than FLT steers. Total FLT BW gain was greater for FLT steers (P = 0.017), but there were no treatment differences for ADG, (P = 0.16), DMI (P = 0.21), G: F (P = 0.82), and feed cost per kg of gain (P = 0.61). However, feed cost per steer was greatest for FLT ($578.30), least for ANN ($276.12), and intermediate for PST ($381.18) (P = 0.043). There was a tendency for FLT steer HCW to be less than ANN and PST, which did not differ (P = 0.076). There was no difference between treatments for LM area (P = 0.094), backfat depth (P = 0.28), marbling score (P = 0.18), USDA yield grade (P = 0.44), and quality grade (P = 0.47). Grazing steer net return ranged from an ANN system high of $9.09/steer to a FLT control system net loss of ?$298 and a PST system that was slightly less than the ANN system (?$30.10). Ten-year (2003 to 2012) hedging and net return sensitivity analysis revealed that the FLT treatment underperformed 7 of 10 yr and futures hedging protection against catastrophic losses were profitable 40, 30, and 20% of the time period for ANN, PST, and FLT, respectively. Retained ownership from birth through slaughter coupled with delayed FLT entry grazing perennial and annual forages has the greatest profitability potential.
机译:在一项为期2年的研究中,春季出生的一岁ste牛皮(n = 144)在秋季断奶后原先长到<0.454 kg·steer?1·d?1,并通过体重指数进行分层,并随机分配给三个五月初的所有权饲养系统(三个副本)。系统包括1)饲育场(FLT),2)放牧进入多年生凤头小麦草(CWG)和原生范围(NR)的ers牛(PST),以及3)放牧多年生CWG和NR的ers牛,然后是豌豆-大麦(PBLY)在进入FLT(ANN)之前混合并收获玉米(UC)。 PST和ANN转向在FLT进入前181天放牧。放牧期间,ANN ers牛(1.01±SE kg / d)和PST(牛(0.77±SE kg / d)的ADG没有差异(P = 0.31)。但是,尽管ANN与PST相比,每头er牛的放牧成本更高(P = 0.002),每公斤增重的放牧成本也没有差异(P = 0.82)。 ANN饲草处理改善了LM面积(P = 0.03)和i.m.百分比。脂肪(P = 0.001)。对于FLT(142 d),完成期的长度最大(P <0.001),对于PST(91 d)为中等,而对于ANN(66 d)则最小。 ANN和PST的转向起点(P = 0.015)和结束终点BW(P = 0.022)大于FLT转向。 FLT ers牛的总FLT BW增幅更大(P = 0.017),但ADG(P = 0.16),DMI(P = 0.21),G:F(P = 0.82)和每头饲料成本没有治疗差异公斤的增重(P = 0.61)。然而,FLT的每头er牛饲料成本最高(578.30美元),ANN的最低(276.12美元),PST的中间成本(381.18美元)最高(P = 0.043)。 FLT操纵HCW倾向于小于ANN和PST,两者没有差异(P = 0.076)。 LM面积(P = 0.094),后脂肪深度(P = 0.28),大理石花纹得分(P = 0.18),USDA产量等级(P = 0.44)和质量等级(P = 0.47)的处理之间没有差异。放牧操纵的净收益范围从ANN系统的高收益9.09美元/操纵到FLT控制系统的净损失298美元和PST系统略低于ANN系统(30.10美元)。十年(2003年至2012年)的套期保值和净收益敏感性分析表明,FLT处理的绩效不及10年中的7年,而针对巨灾损失的期货套期保值在ANN,PST和ANN的时间段分别可获利40、30和20% FLT,分别。从出生到被屠宰保持所有权,再加上FLT进入多年生和年度饲草的放牧延迟,具有最大的获利潜力。

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