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首页> 外文期刊>Asian-Australasian Journal of Animal Sciences >Effects of Supplemental Levels of Saccharomyces cerevisiae Fermentation Product on Lactation Performance in Dairy Cows under Heat Stress
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Effects of Supplemental Levels of Saccharomyces cerevisiae Fermentation Product on Lactation Performance in Dairy Cows under Heat Stress

机译:补充啤酒酵母发酵产物水平对热应激下奶牛泌乳性能的影响

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The objectives of this study were to evaluate the effects of different supplemental levels of Saccharomyces cerevisiae fermentation product (SCFP; Original XP; Diamond V) on lactation performance in Holstein dairy cows under heat stress. Eighty-one multiparous Holstein dairy cows were divided into 27 blocks of 3 cows each based on milk yield (23.6 +/- 0.20 kg/d), parity (2.88 +/- 0.91) and day in milk (204 +/- 46 d). The cows were randomly assigned within blocks to one of three treatments: 0 (control), 120, or 240 g/d of SCFP mixed with 240, 120, or 0 g of corn meal, respectively. The experiment was carried out during the summer season of 2014, starting from 14 July 2014 and lasting for 9 weeks with the first week as adaption period. During the experimental period, average daily temperature-humidity index (measured at 08:00, 14:00, and 20:00) was above 68, indicating that cows were exposed to heat stress throughout the study. Rectal temperatures tended to decrease linearly (p = 0.07) for cows supplemented with SCFP compared to the control cows at 14:30, but were not different at 06:30 (p>0.10). Dry matter intake was not affected by SCFP supplementation (p>0.10). Milk yield increased linearly (p0.05) with increasing levels of SCFP. Feed efficiency (milk yield/dry matter intake) was highest (p0.05) for cows fed 240 g/d SCFP. Cows supplemented with SCFP gained (p0.01) body weight, while cows in the control lost body weight. Net energy balance also increased linearly (p0.01) with increasing levels of SCFP. Concentrations of milk urea nitrogen (p0.01) decreased linearly with increasing levels of SCFP, while no difference (p>0.10) was observed among the treatments in conversion of dietary crude protein to milk protein yield. In summary, supplementation of SCFP alleviated the negative effect of heat stress in lactating Holstein dairy cows and allowed cows to maintain higher milk production, feed efficiency and net energy balance. Effects of SCFP were dose-dependent and greater effects were observed from higher doses.
机译:这项研究的目的是评估不同补充水平的酿酒酵母发酵产物(SCFP; Original XP; Diamond V)对热应激下荷斯坦奶牛泌乳性能的影响。根据产奶量(23.6 +/- 0.20 kg / d),胎次(2.88 +/- 0.91)和日产奶量(204 +/- 46 d),将81头荷斯坦奶牛分成27头,每头3头。 )。将奶牛随机分为三个处理组之一:0(对照),120 g / d或240 g / d的SCFP与240、120或0 g玉米粉混合。该实验在2014年夏季进行,从2014年7月14日开始,持续9周,第一周为适应期。在实验期间,平均每日温度-湿度指数(在08:00、14:00和20:00测得)高于68,表明在整个研究过程中,母牛都受到热应激的影响。与对照奶牛相比,补充SCFP的奶牛的直肠温度倾向于线性降低(p = 0.07),但在06:30时则没有差异(p> 0.10)。干物质摄入不受SCFP补充的影响(p> 0.10)。随着SCFP水平的提高,牛奶产量线性增加(p <0.05)。饲喂240 g / d SCFP的母牛的饲料效率(产奶量/干物质摄入量)最高(p <0.05)。补充SCFP的奶牛体重增加(p <0.01),而对照组的奶牛体重下降。净能量平衡也随着SCFP水平的增加而线性增加(p <0.01)。牛奶中尿素氮的浓度(p <0.01)随SCFP水平的增加呈线性下降,而从日粮粗蛋白转化为牛奶蛋白产量的处理之间未观察到差异(p> 0.10)。总之,补充SCFP减轻了泌乳荷斯坦奶牛的热应激的负面影响,并使奶牛保持较高的产奶量,饲料效率和净能量平衡。 SCFP的作用是剂量依赖性的,从更高剂量观察到更大的作用。

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