首页> 外文期刊>Journal of Animal Science >Feeding glycerol-enriched yeast culture improves performance, energy status, and heat shock protein gene expression of lactating Holstein cows under heat stress.
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Feeding glycerol-enriched yeast culture improves performance, energy status, and heat shock protein gene expression of lactating Holstein cows under heat stress.

机译:饲喂富含甘油的酵母培养物可改善热应激下泌乳的荷斯坦奶牛的生产性能,能量状况和热休克蛋白基因表达。

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摘要

This study was conducted to evaluate the effects of supplemental common yeast culture (CY) and glycerol-enriched yeast culture (GY) on performance, plasma metabolites, antioxidant status, and heat shock protein 70 (HSP70) mRNA expression in lactating Holstein cows under heat stress. During summer months, 30 healthy multiparous lactating cows (parity 3.25 +or- 0.48; 60 +or- 13 d in milk [DIM]; 648 +or- 57 kg BW; an average milk yield of 33.8 +or- 1.6 kg/d) were blocked by parity, previous milk yield, and DIM and randomly allocated to 3 dietary treatments: no supplemental yeast culture (Control), 1 L/d of CY (33.1 g yeast) per cow, and 2 L/d of GY (153.2 g glycerol and 31.6 g yeast) per cow. During the 60-d experiment, values of air temperature and relative humidity inside the barn were recorded hourly every 3 d to calculate temperature-humidity index (THI). Weekly rectal temperatures (RT) and respiration rates and daily DMI and milk yield were recorded for all cows. Milk and blood samples were taken twice monthly, and BW and BCS were obtained on d 0 and 60. In this experiment, THI values indicated cows experienced a moderate heat stress. Cows supplemented with CY and GY had greater yields of milk, energy-corrected milk and milk fat, and milk fat percent but lower HSP70 mRNA expression in peripheral blood lymphocytes than Control cows (P< 0.05). Supplementing CY and GY tended (P< 0.15) to decrease RT at 1400 h, increase milk protein yield and erythrocyte glutathione, and reduce plasma urea nitrogen compared with Control. Lower plasma NEFA concentration and HSP70 mRNA expression in peripheral blood lymphocytes (P< 0.05) and tendencies towards greater plasma glucose concentration (P = 0.11) but less BW loss (P = 0.14) were observed in GY relative to CY cows. In conclusion, either CY or GY supplementation partially mitigated the negative effects of heat stress on performance and HSP70 mRNA expression of lactating cows, and GY supplementation provided additional improvements in energy status and HSP70 gene expression of lactating cows
机译:进行这项研究来评估补充普通酵母培养物(CY)和富含甘油的酵母培养物(GY)对热状态下泌乳的荷斯坦奶牛生产性能,血浆代谢物,抗氧化剂状态和热休克蛋白70(HSP70)mRNA表达的影响强调。在夏季月份中,有30头健康的多头泌乳母牛(胎[DIM]胎次为3.25 +或0.48; 60 +或13 d;体重为648 +-57千克体重;平均产奶量为33.8 +或-1.6 kg / d )被均等,先前的产奶量和DIM所限制,并随机分配给3种饮食处理:无补充酵母培养物(对照),每头母牛1 L / d CY(33.1 g酵母)和2 L / d GY(每头母牛153.2克甘油和31.6克酵母)。在60天的实验过程中,每3天每小时记录一次仓内的空气温度和相对湿度值,以计算温度-湿度指数(THI)。记录所有母牛的每周直肠温度(RT)和呼吸频率以及每日DMI和产奶量。每月两次采集牛奶和血液样本,并在第0天和第60天获得BW和BCS。在该实验中,THI值表明奶牛经历了中等的热应激。补充CY和GY的奶牛的牛奶,能量校正的牛奶和奶脂,牛奶脂肪百分比更高,但外周血淋巴细胞中的HSP70 mRNA表达却比对照奶牛低(P <0.05)。与对照相比,补充CY和GY倾向于(P <0.15)降低1400 h的RT,增加乳蛋白产量和红细胞谷胱甘肽并降低血浆尿素氮。相对于CY奶牛,GY患者的外周血淋巴细胞血浆NEFA浓度和HSP70 mRNA表达较低(P <0.05),血浆葡萄糖浓度较高(P = 0.11),而体重减轻(P = 0.14)则较低。总之,补充CY或GY可以部分缓解热应激对泌乳牛的生产性能和HSP70 mRNA表达的负面影响,而补充GY可以进一步改善泌乳牛的能量状况和HSP70基因表达

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