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Influence of breed, milk production, season, and ambient temperature on dairy cow reticulorumen temperature

机译:品种,产奶量,季节和环境温度对奶牛网纹温度的影响

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Automatic monitoring of core body temperature in dairy cattle could be useful for identification of illness, heat stress, general physiological stress, and estrus. The SmartBolus (TenXSys Inc., Eagle, ID) system used a reticulorumen bolus to automatically record and transmit dairy cow temperatures. The objective of this research was to characterize the influence of milk yield (MY), time of day, breed, ambient temperature (AT), and season on reticulorumen temperatures (RT) in lactating dairy cows. Continuous RT and AT were collected by SmartBolus transponders every 15 min (96 records per d) from 93 cows (65 Holstein, 18 crossbred, and 10 Jersey) for 615 d. Mean (±SD) daily RT, AT, and MY were 40.14 ± 0.32℃, 12.20 ± 10.61℃, and 33.85 ± 8.67 kg, respectively. The maximum and minimum RT were recorded at 2330 and 1000 h, respectively. Ambient temperature increased RT. Summer RT was significantly greater than spring, fall, or winter RT. The effect of MY on RT varied by breed, season, and AT. Crossbred RT was significantly lower than Holstein RT after adjusting for MY. Crossbred RT responded less to increasing AT than did Holstein RT, potentially indicating improved heat tolerance among these crossbred dairy cows. Reticulorumen temperature increased more dramatically for cows with greater milk yield as AT increased, demonstrating that high-producing cows are more susceptible to heat stress than low-producing cows. These results could be useful in interpretation of automatic temperature system data, heat stress management, and genetic selection of heat-tolerant cows.
机译:自动监测奶牛的核心体温可能有助于识别疾病,热应激,一般生理应激和发情。 SmartBolus(TenXSys Inc.,Eagle,ID)系统使用网状大丸剂自动记录和传输奶牛温度。这项研究的目的是表征泌乳奶牛产奶量(MY),一天中的时间,品种,环境温度(AT)和季节对网织温度(RT)的影响。 SmartBolus发送应答器每15分钟(每天96条记录)从SmartBolus发送应答器中收集连续RT和AT,共93天(65荷斯坦,18头杂种和10泽西),持续615天。每日平均(±SD)RT,AT和MY分别为40.14±0.32℃,12.20±10.61℃和33.85±8.67公斤。分别在2330和1000 h记录最大和最小RT。环境温度升高RT。夏季RT明显大于春季,秋季或冬季RT。 MY对RT的影响随品种,季节和AT的不同而不同。调整MY后,杂种RT显着低于Holstein RT。杂种逆转录对增加的AT的反应比Holstein RT少,这可能表明这些杂种奶牛的耐热性提高。随着AT的增加,牛奶产量更高的奶牛的网状温度升高更为明显,这表明高产奶牛比低产奶牛更容易受到热应激。这些结果可能有助于自动温度系统数据的解释,热应激管理以及耐热母牛的基因选择。

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