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选择 ADH1C 基因型并饲喂低维生素 A 饮食的植入和非植入牛的育肥性能和免疫功能分析。

Feedlot performance and immune function analysis of implanted and non-implanted steers selected for alcohol dehydrogenase 1 C (ADH1C) genotype and fed a low vitamin A diet.

机构信息

1Animal and Poultry Science,University of Saskatchewan,51 Campus Drive,Saskatoon,SK S7N 5A8,Canada.

2Integrated Beef Research Station - Cattleland Feedyards Ltd,P.O. Box 2265,Strathmore,AB T1P 1K2,Canada.

出版信息

Animal. 2019 Feb;13(2):292-300. doi: 10.1017/S1751731118001210. Epub 2018 Jun 18.

Abstract

Previous studies have shown that the interaction between limiting vitamin A (VA) and an alcohol dehydrogenase 1 C (ADH1C) variant in beef cattle results in increased intramuscular fat in the longissimus thoracis muscle in one genotype when fed low dietary VA. Although quality grade is important for increased profitability and improving taste characteristics of beef products, limiting VA too drastically can impair animal welfare. The objectives of this study were to determine if this marker-assisted management strategy would be effective, and whether any impairment in immune function would occur in a feedlot setting. Mixed breed beef steers (n=2000) were sorted into 40 feedlot pens so that all combinations of ADH1C genotype (TT or CT), VA level (50% or 100% of recommended) and hormonal implant status (implanted (IMP) or non-implanted (NI)) were equally represented within the population. The VA×ADH1C interaction was not observed. An implant status × ADH1C interaction was observed with average daily gain (ADG; P=0.03). Steers that were IMP and CT had higher ADG than IMP TT (CT=1.69 and TT=1.62 kg/day), whereas both genotypes in the NI steers were lower (CT=1.29 and TT=1.32 kg/day). Implant status was shown to affect dry matter intake (DMI; IMP=8.55 and NI=7.87 kg; P<0.01), total days-on-feed (IMP=164.4 and NI 210.5 days; P<0.01), USDA yield grade (YIELD; IMP=2.40 and NI=2.77; P<0.01), marbling score (MARB; IMP=392 and NI=455; P<0.01), longissimus thoracis area (LTA; IMP=85.0 and NI=80.7 cm2; P=0.01) and backfat thickness (FAT; IMP=8.0 and NI 10.0 mm; P<0.01). Overall, IMP animals finished on fewer total days-on-feed with higher ADG, DMI, larger LTA, and lower YIELD, MARB and FAT. To investigate immune function parameters, crossbred steers (n=18) were selected from a prior feeding trial so that all combinations of ADH1C (TT, CT and CC) and VA (25% or 75%) were equally represented. Blood cell count analysis and peripheral blood mononuclear cell proliferation and stimulation assays were conducted. None of these immune parameters were affected by VA level. Treatment and mortality records were examined in the 2000 steer population, where no correlations with ADH1C, implant status or VA level were observed. Due to no VA × ADH1C interaction, this nutrigenetic marker-assisted management strategy is not effective at this time in commercial beef cattle feedlots, however, supplementing VA at a level as low as 25% of recommended in finishing rations would likely not result in signs of immune dysfunction.

摘要

先前的研究表明,在低维生素 A (VA)日粮条件下,限制维生素 A(VA)与醇脱氢酶 1C(ADH1C)变异体的相互作用会导致牛长肌中肌内脂肪增加。尽管质量等级对于提高盈利能力和改善牛肉产品的口感特性很重要,但过度限制 VA 会损害动物福利。本研究的目的是确定这种基于标记的管理策略是否有效,以及在饲养场环境中是否会发生任何免疫功能受损的情况。杂种肉牛(n=2000)被分为 40 个饲养场围栏,以便 ADH1C 基因型(TT 或 CT)、VA 水平(推荐量的 50%或 100%)和激素植入状态(植入(IMP)或非植入(NI))的所有组合在群体中都得到同等代表。未观察到 VA×ADH1C 相互作用。观察到植入状态×ADH1C 相互作用与平均日增重(ADG;P=0.03)有关。植入 IMP 和 CT 的牛 ADG 高于 IMP TT(CT=1.69 和 TT=1.62 kg/天),而 NI 牛的两种基因型均较低(CT=1.29 和 TT=1.32 kg/天)。植入状态被证明会影响干物质摄入量(DMI;IMP=8.55 和 NI=7.87 kg;P<0.01)、总饲养天数(IMP=164.4 和 NI 210.5 天;P<0.01)、美国农业部产肉等级(YIELD;IMP=2.40 和 NI=2.77;P<0.01)、大理石花纹评分(MARB;IMP=392 和 NI=455;P<0.01)、长肌面积(LTA;IMP=85.0 和 NI=80.7 cm2;P=0.01)和背膘厚度(FAT;IMP=8.0 和 NI 10.0 mm;P<0.01)。总体而言,IMP 动物在总饲养天数上的完成时间更少,ADG、DMI、较大的 LTA 和较低的 YIELD、MARB 和 FAT 更高。为了研究免疫功能参数,从先前的饲养试验中选择了杂交肉牛(n=18),以便 ADH1C(TT、CT 和 CC)和 VA(25%或 75%)的所有组合都得到同等代表。进行了血细胞计数分析以及外周血单核细胞增殖和刺激试验。VA 水平对这些免疫参数没有影响。在 2000 头肉牛群体中检查了治疗和死亡率记录,未观察到 ADH1C、植入状态或 VA 水平之间的相关性。由于没有 VA×ADH1C 相互作用,因此目前这种营养遗传标记辅助管理策略在商业肉牛饲养场中并不有效,但是在育肥日粮中补充 VA 至推荐量的 25%可能不会导致免疫功能障碍的迹象。

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