Effects of heat stress abatement on behavioral response in lactating dairy cows prior to and following an intramammary lipopolysaccharide infusion

IF 3.7 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Dairy Science Pub Date : 2025-02-01 DOI:10.3168/jds.2024-25298
T.N. Marins , R.M. Orellana Rivas , Y-C. Chen , V.H.L.R. Melo , Z. Wang , H. Liu , J. Gao , C.G. Savegnago , A.M. Roper , J.K. Bernard , P. Melendez , S. Tao
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Abstract

The assessment of animal behavior serves as a valuable approach to identify illness and animal responses to environmental stimuli. Both heat stress and mastitis are reported to affect the behavioral responses of dairy cattle. However, little is known about the effects of heat stress on the lactating cow's behavioral responses to mastitis. The aims of the current study were to evaluate the effects of deprivation of evaporative cooling on behavioral responses of lactating dairy cows before and following mammary inflammation induced by intramammary LPS (IM-LPS) infusion and to characterize the effect of deprivation of evaporative cooling on feed sorting in lactating dairy cows during summer. Multiparous mid-lactating Holstein dairy cows (n = 18, parity = 2.4 ± 0.6, DIM = 136 ± 61 d) were randomly assigned to: evaporatively cooled (CL, n = 9) or not cooled (NC, n = 9) for 36 d (average temperature-humidity index = 78.4). The evaporative cooling system included misters and fans. Misters were installed on the front face of each fan, which was placed over both feed bunk and freestalls. On d 30, the left rear quarters of a subset of cows (n = 14, 7 per treatment) were infused with a bolus of LPS (10 µg of Escherichia coli O111:B4 LPS). Feeding and resting behaviors were recorded throughout the experiment using automated sensor devices (NEDAP). Sorting activity based on particle size separation using a Penn State Particle Separator was assessed at d 3, 16, and 26 of the experiment. Before IM-LPS, NC cows had lower ruminating and eating time, and consequently greater inactive time compared with CL cows. Relative to CL cows, NC cows had reduced lying time, and greater standing and walking time. The NC cows also had greater standing bouts, only at the beginning of the experiment, relative to CL cows. Additionally, NC cows sorted more for long particles (NC: 99.4% vs. CL: 94.4%) and sorted against medium and short particles on d 3 of the experiment compared with CL cows. However, following IM-LPS, no significant differences in behavioral responses were observed between NC and CL cows. In conclusion, deprivation of evaporative cooling negatively affected the behavioral responses of lactating dairy cows during summer. Further, heat-stressed cows without evaporative cooling sorted more for long particles of the diet potentially as a response to cope with the reduced rumen pH. However, deprivation of evaporative cooling does not have a significant effect on the lactating cow's behavioral responses to LPS induced mammary inflammation.
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乳房内注射脂多糖前后减轻热应激对泌乳奶牛行为反应的影响。
动物行为评估是确定疾病和动物对环境刺激反应的重要方法。据报道,热应激和乳腺炎都会影响奶牛的行为反应。然而,人们对热应激对泌乳牛乳腺炎行为反应的影响知之甚少。本研究的目的是评估在乳房内输注脂多糖(IM-LPS)诱发乳腺炎之前和之后,剥夺蒸发冷却对泌乳奶牛行为反应的影响,并描述夏季剥夺蒸发冷却对泌乳奶牛饲料分选的影响。多胎中期泌乳荷斯坦奶牛(n = 18,奇数 = 2.4 ± 0.6,DIM = 136 ± 61 d)被随机分配到:蒸发冷却(CL,n = 9)或不冷却(NC,n = 9)36 d(平均温湿度指数 = 78.4)。蒸发冷却系统包括喷雾器和风扇。喷雾器安装在每个风扇的前端,风扇则安装在饲料仓和空栏的上方。第 30 天,向部分奶牛(n = 14,7 头/处理)的左后部注射 LPS(10 µg 大肠杆菌 O111:B4 LPS)。在整个实验过程中,使用自动感应装置(NEDAP)记录采食和休息行为。在实验的第 3、16 和 26 天,使用宾夕法尼亚州立大学的颗粒分离器根据颗粒大小进行分选活动评估。与CL奶牛相比,IM-LPS试验前,NC奶牛的反刍和进食时间较短,因此非活动时间较长。与CL奶牛相比,NC奶牛的卧地时间减少,站立和行走时间增加。与CL奶牛相比,NC奶牛的站立时间也更长(仅在实验开始时)。此外,与CL奶牛相比,NC奶牛在实验第3天对长颗粒(NC:99.4% vs. CL:94.4%)的分选率更高,对中颗粒和短颗粒的分选率也更高。然而,在 IM-LPS 试验后,NC 和 CL 奶牛的行为反应没有明显差异。总之,剥夺蒸发冷却对夏季泌乳奶牛的行为反应有负面影响。此外,没有蒸发冷却功能的热应激奶牛对长颗粒日粮的分选更多,这可能是应对瘤胃 pH 值降低的一种反应。然而,剥夺蒸发冷却对泌乳奶牛对LPS诱发的乳腺炎症的行为反应没有显著影响。
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来源期刊
Journal of Dairy Science
Journal of Dairy Science 农林科学-奶制品与动物科学
CiteScore
7.90
自引率
17.10%
发文量
784
审稿时长
4.2 months
期刊介绍: The official journal of the American Dairy Science Association®, Journal of Dairy Science® (JDS) is the leading peer-reviewed general dairy research journal in the world. JDS readers represent education, industry, and government agencies in more than 70 countries with interests in biochemistry, breeding, economics, engineering, environment, food science, genetics, microbiology, nutrition, pathology, physiology, processing, public health, quality assurance, and sanitation.
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