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昼夜及日粮对通过肉牛尿嘌呤衍生物排泄量估算微生物蛋白流量的影响。

Diurnal and dietary impacts on estimating microbial protein flow from urinary purine derivative excretion in beef cattle.

作者信息

Crawford Grant I, MacDonald Jim C, Watson Andrea K, Erickson Galen E, Klopfenstein Terry J

机构信息

Department of Animal Science, University of Nebraska, Lincoln.

出版信息

Transl Anim Sci. 2020 Jul 20;4(3):txaa140. doi: 10.1093/tas/txaa140. eCollection 2020 Jul.

Abstract

Two experiments were conducted to determine the effects of diet composition and time of urine spot sampling on estimates of urinary purine derivative (PD) excretion. In Exp. 1, 116 individually fed crossbred heifers (407 ± 32 kg) were arranged in a randomized block design (82 d). Treatments were arranged in a 2 × 3 factorial design, with two urine spot sample collection times (0700 and 1700 hours; AM and PM) and three diets: 85% steam-flaked corn (SFC); 85% SFC + 1.5% urea (UREA); or 25% SFC, 30% wet corn gluten feed, and 30% corn bran (BYPROD). In Exp. 2, six ruminally and duodenally fistulated steers (474 ± 37 kg) were arranged in a replicated 3 × 3 Latin square design, with dietary treatments identical to Exp. 1 (63 d). Treatment diets were selected to result in varied amounts of microbial crude protein (MCP) in order to evaluate the accuracy of using estimates of urinary PD excretion to predict MCP. Urine spot samples were collected at 0700, 1200, 1700, and 2200 hours. No urine collection time × diet interactions occurred ( > 0.20) for any variable in either experiment. In Exp. 1, dry matter intake (DMI) was greatest with BYRPOD (10.40 kg/d) and lowest with SFC (7.90 kg/d; < 0.05). Feed efficiencies were greatest for UREA (0.182) and least for SFC (0.141; < 0.05). Urinary PD:creatinine (PD:C) ratio was greatest for BYPROD (1.25) and least for SFC (0.94; < 0.05). Urine spot sampling time had a significant ( < 0.05) impact on PD:C, 1.03 for AM and 1.22 for PM samples. In Exp. 2, DMI was greater ( < 0.05) with BYPROD than with SFC and tended ( = 0.07) to be greater with BYPROD than with UREA. Ruminal pH was greatest for BYPROD (5.94; < 0.05). Flow of MCP was 636, 829, and 1,056 g/d for SFC, UREA, and BYPROD, with BYPROD being greater ( < 0.05) than SFC and tending ( = 0.06) to be greater than UREA. Urinary PD:C was greater ( < 0.05) for BYPROD than SFC and tended ( = 0.09) to be greater for UREA than SFC. Urinary PD:C increased linearly ( < 0.05) with sampling time. Diets formulated to affect DMI and MCP flow resulted in differences in urinary PD excretion, and these results related well with MCP flow estimated from duodenal purines. Collecting spot samples of urine later in the day resulted in greater estimates of urinary PD excretion; purine and PD flows appear to increase with time after one morning feeding per day. This method is well suited to evaluating relative differences between treatments but should not be extrapolated to assume absolute values.

摘要

进行了两项试验以确定日粮组成和尿样采集时间对尿嘌呤衍生物(PD)排泄量估计值的影响。在试验1中,116头个体饲养的杂交小母牛(407±32千克)采用随机区组设计(82天)。处理采用2×3析因设计,有两个尿样采集时间(上午7点和下午5点;AM和PM)和三种日粮:85%蒸汽压片玉米(SFC);85% SFC + 1.5%尿素(UREA);或25% SFC、30%湿玉米麸质饲料和30%玉米麸皮(BYPROD)。在试验2中,6头瘤胃和十二指肠造瘘公牛(474±37千克)采用重复3×3拉丁方设计,日粮处理与试验1相同(63天)。选择处理日粮以产生不同量的微生物粗蛋白(MCP),以便评估用尿PD排泄量估计值预测MCP的准确性。在上午7点、中午12点、下午5点和晚上10点采集尿样。在任何一项试验中,对于任何变量,均未出现尿样采集时间×日粮的交互作用(P>0.20)。在试验1中,BYRPOD组的干物质采食量(DMI)最高(10.40千克/天),SFC组最低(7.90千克/天;P<0.05)。UREA组的饲料效率最高(0.182),SFC组最低(0.141;P<0.05)。BYPROD组的尿PD:肌酐(PD:C)比值最高(1.25),SFC组最低(0.94;P<0.05)。尿样采集时间对PD:C有显著影响(P<0.05),上午采集的样本为1.03,下午采集的样本为1.22。在试验2中,BYPROD组的DMI高于SFC组(P<0.05),且BYPROD组的DMI高于UREA组的趋势(P = 0.07)。BYPROD组的瘤胃pH值最高(5.94;P<0.05)。SFC、UREA和BYPROD组的MCP流量分别为636、829和1056克/天,BYPROD组高于SFC组(P<0.05),且高于UREA组的趋势(P = 0.06)。BYPROD组的尿PD:C高于SFC组(P<0.05),UREA组高于SFC组的趋势(P = 0.09)。尿PD:C随采样时间呈线性增加(P<0.05)。旨在影响DMI和MCP流量的日粮导致尿PD排泄量存在差异,这些结果与根据十二指肠嘌呤估计的MCP流量密切相关。在一天中较晚时间采集尿样会使尿PD排泄量的估计值更高;每天一次晨饲后,嘌呤和PD流量似乎随时间增加。该方法非常适合评估处理之间的相对差异,但不应外推以假定绝对值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/909d/7433915/836d49cbd83f/txaa140f0001.jpg

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