首页> 美国卫生研究院文献>Journal of Animal Science >Level and source of fat in the diet of gestating beef cows: I. Effects on the prepartum performance of the dam and birth weight of the progeny
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Level and source of fat in the diet of gestating beef cows: I. Effects on the prepartum performance of the dam and birth weight of the progeny

机译:令人兴奋的牛奶牛的饮食水平和脂肪来源:I。对后代大坝和出生体重的预备性能影响

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摘要

A 2-yr study was conducted to evaluate the effects of level and source of fat in the diet of gestating beef cows on their prepartum performance and birth weight of progeny. Each year, 75 multiparous (≥3 calving) pregnant Angus cows were stratified by BW (663 ± 21.5 kg) and BCS (2.6 ± 0.12; 1 to 5 scale) and randomly assigned to 1 of 15 outdoor pens. Subsequently, each pen was randomly assigned to 1 of 3 (n = 5) treatments: a low-fat diet (LF; 1.4 ± 0.12% EE) consisting of grass-legume hay, barley straw, and barley grain, or 1 of 2 high-fat diets (HF; 3.3 ± 0.20% EE) that included either a canola seed (CAN) or a flaxseed (FLX) based pelleted feed. Diets were formulated to meet the requirements of pregnant beef cows during the last 2 trimesters of gestation (0.183 ± 4.8 d), adjusted for changes in environmental conditions, and offered such that each pen on average received similar daily amounts of DE (31.2 ± 2.8 Mcal/cow), CP (1.36 ± 0.13 kg/cow), and DM (12.9 ± 1.0 kg/cow). Data were analyzed as a randomized complete block design with contrasts to separate the effects of level (LF vs. HF) and source (CAN vs. FLX) of fat. After 160 d on trial, conceptus corrected-BW (CC-BW) of LF cows (708 kg) and the proportion of overconditioned cows (13.2%) were greater (P ≤ 0.04) than those of HF, with no difference (P ≥ 0.84) between CAN and FLX for CC-BW (697 kg) and proportion of overconditioned cows (3.6% vs. 2.9%). Feeding FLX diet during gestation resulted in cows with a greater (P ≤ 0.01) concentration of conjugated linolenic acid (0.12% vs. 0.05%) and n-3 (0.58% vs. 0.37%) fatty acids, and a tendency (P = 0.09) for conjugated linoleic acid concentration (1.05% vs. 0.88%) to be greater in subcutaneous adipose tissue (SCAT) when compared with cows fed the CAN diet. By the end of gestation, serum NEFA concentration of LF cows (592 µEq/L) was lower (P < 0.01) than that of HF cows, and FLX cows had greater (P < 0.01) serum NEFA concentration than CAN cows (636 vs. 961 µEq/L). Cows receiving the LF diet during gestation gave birth to lighter (P < 0.01) calves compared with those receiving the HF diets (40.2 vs. 42.9 kg), with no difference (P = 0.24) between calves born to CAN (42.4 kg) and FLX (43.3 kg) cows. In conclusion, these results suggest a partitioning of the ME in pregnant beef cows that is dependent on the type of dietary energy, resulting in heavier calves at birth for cows fed high-fat diets. Also, the type of fatty acid in the diet of gestating beef cows affected the fatty acid profile in SCAT and serum NEFA concentration.
机译:进行了2年的研究,以评估饮食饮食水平和脂肪来源的影响,饲料牛奶饲料的预备性能和后代的出生体重。每年,75个多体(≥3个钙)怀孕的Angus牛被BW(663±21.5千克)和BCS(2.6±0.12; 1到5级)分层,并随机分配给15个室外笔中的1个。随后,每支笔随机分配给3(n = 5)治疗:低脂饮食(LF; 1.4±0.12%EE),包括草豆类干草,大麦秸秆和大麦谷物,或者1高脂饮食(HF; 3.3±0.20%),包括油菜籽(罐)或亚麻籽(FLX)的颗粒饲料。制定饮食以满足怀孕牛肉奶牛的要求(0.183±4.8天),调整为环境条件的变化,并提供平均每天的每日德(31.2±2.8) MCAL / COW),CP(1.36±0.13千克/牛),DM(12.9±1.0千克/牛)。分析数据作为随机完整的块设计,与对比度的对比度,以分离脂肪的水平(LF与HF)和源(CAN与FLX)的效果。在160 d之后,LF奶牛(708千克)的概念矫正BW(CC-BW)和超限制奶牛(13.2%)的比例比HF更大(P≤0.04),没有差异(P≥ 0.84)CC-BW(697千克)的CAN和FLX之间的含量和超压奶牛的比例(3.6%与2.9%)。在妊娠期间喂养FLX饮食导致牛浓度较大(p≤0.01)浓度的共轭亚烯酸(0.12%与0.05%)和N-3(0.58%vs.0.37%)脂肪酸,以及趋势(p = 0.09)对于与喂养罐饮食的奶牛相比,在皮下脂肪组织(SCAT)中缀合的亚油酸浓度(1.05%vs.0.88%)更大。在妊娠结束时,LF奶牛(592μSq/ L)的血清NeFa浓度低于HF奶牛的较低(P <0.01),FLX奶牛比牛(636 Vs)更大(P <0.01)血清NEFA浓度(636 Vs 。961μq/ l)。与接受HF饮食(40.2与42.9kg)的人相比,接受LF饮食的奶牛(P <0.01)犊牛(40.2与42.9千克),犊牛在牛犊之间没有差异(p = 0.24)(42.4千克)和FLX(43.3千克)奶牛。总之,这些结果表明我在孕妇中的牛肉母牛中的分区,这些奶牛依赖于饮食能量的类型,导致牛奶喂养高脂饮食的母牛的较重牛犊。此外,妊娠牛奶饲料中脂肪酸的类型影响了Scat和血清Nefa浓度的脂肪酸谱。

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