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泌乳期阶段和日粮精料水平对高山奶山羊能量利用的影响。

Effects of stage of lactation and dietary concentrate level on energy utilization by Alpine dairy goats.

机构信息

American Institute for Goat Research, Langston University, Langston, OK 73050, USA.

出版信息

J Dairy Sci. 2010 Oct;93(10):4818-28. doi: 10.3168/jds.2010-3315.

Abstract

Twenty-four lactating and 13 nonlactating Alpine goats were used to determine effects of stage of lactation and dietary concentrate level on energy utilization. Diets comprising 60 or 20% concentrate (60%C and 20%C, respectively) were consumed ad libitum by lactating animals and at a level of intake near maintenance by nonlactating animals. Measurement periods were d 25 to 31 (early), 87 to 94 (mid), and 176 to 183 (late) of lactation. Eleven observations were made in early and mid lactation for each diet, and 8 and 7 were made in late lactation for the 60%C and 20%C diets, respectively. Efficiency of metabolizable energy (ME) use for maintenance (66.9, 71.4, and 61.1% for early, mid, and late lactation, respectively) and the maintenance ME requirement (479, 449, and 521 kJ/kg of BW(0.75) for early, mid, and late lactation, respectively) determined with nonlactating animals differed among stages of lactation. The efficiency of ME use for maintenance was similar between diets, but the maintenance requirement tended to be greater for the 60%C than for the 20%C diet (504 vs. 463 kJ/kg of BW(0.75)). The latter difference may have involved greater ME intake for the 60%C diet, resulting in a slightly greater difference between ME intake and total heat energy for the 60%C compared with the 20%C diet (11 vs. -8 kJ/kg of BW(0.75)). Intake of ME by lactating goats was greater for the 60%C than for the 20%C diet (18.6 vs. 16.3 MJ/d). Recovered energy in lactation from mobilized tissue tended to be greater for the 60%C than for the 20%C diet (8.44 vs. 6.55 MJ/d) and differed among stages of lactation (2.60, 1.59, and 1.13 MJ/d in early, mid, and late lactation, respectively). Recovered energy in tissue gain was similar among stages of lactation and between diets and was not different from 0. Efficiency of use of dietary ME for lactation differed among stages of lactation (59.5, 51.9, and 65.4% for early, mid, and late lactation, respectively) and tended to be greater for the 60%C than for the 20%C diet (64.2 vs. 54.9%). The efficiency of use of dietary ME for maintenance and lactation was similar among stages of lactation and was greater for the 60%C compared with the 20%C diet (64.3 vs. 60.9%). Predicted milk yield from National Research Council requirements was reasonably accurate. In conclusion, using data of nonlactating goats to study energy utilization for maintenance in lactation has limitations. Efficiency of energy use by lactating dairy goats consuming diets high in concentrate appears greater than that by goats consuming diets low in concentrate. Despite differences in nutrient requirement expressions, observations of this study support National Research Council recommendations of energy requirements of lactating dairy goats.

摘要

二十四头泌乳和十三头非泌乳高山山羊被用于确定泌乳阶段和日粮浓缩物水平对能量利用的影响。泌乳动物自由采食由 60%或 20%浓缩物(分别为 60%C 和 20%C)组成的日粮,而非泌乳动物的摄入量接近维持需要量。试验期分别为泌乳的第 25 至 31 天(早期)、第 87 至 94 天(中期)和第 176 至 183 天(晚期)。每个日粮分别在早期和中期进行了 11 次观察,在晚期泌乳时,60%C 和 20%C 日粮分别进行了 8 次和 7 次观察。用非泌乳动物确定的维持代谢能(ME)利用效率(分别为早期、中期和晚期泌乳的 66.9%、71.4%和 61.1%)和维持 ME 需要量(分别为早期、中期和晚期泌乳的 479、449 和 521 kJ/kgBW(0.75))在泌乳阶段之间存在差异。维持 ME 利用效率在日粮间相似,但 60%C 日粮的维持需要量倾向于高于 20%C 日粮(504 比 463 kJ/kgBW(0.75))。后一种差异可能涉及到 60%C 日粮的 ME 摄入量更大,导致 60%C 与 20%C 日粮相比,ME 摄入量和总热能之间的差异略大(11 比 -8 kJ/kgBW(0.75))。泌乳山羊的 ME 摄入量高于 20%C 日粮(18.6 比 16.3 MJ/d)。从动员组织中回收的泌乳能量倾向于 60%C 日粮高于 20%C 日粮(8.44 比 6.55 MJ/d),并且在泌乳阶段之间存在差异(早期、中期和晚期泌乳分别为 2.60、1.59 和 1.13 MJ/d)。组织增益中回收的能量在泌乳阶段之间和日粮之间相似,并且与 0 没有差异。ME 用于泌乳的效率在泌乳阶段之间存在差异(分别为早期、中期和晚期泌乳的 59.5%、51.9%和 65.4%),并且倾向于 60%C 日粮高于 20%C 日粮(64.2 比 54.9%)。ME 用于维持和泌乳的效率在泌乳阶段之间相似,60%C 日粮高于 20%C 日粮(64.3 比 60.9%)。根据国家研究委员会的要求预测的产奶量相当准确。总之,使用非泌乳山羊的数据来研究泌乳时的维持能量利用存在局限性。高浓缩日粮饲养的泌乳奶山羊的能量利用效率似乎高于低浓缩日粮饲养的奶山羊。尽管营养需求表达存在差异,但本研究的观察结果支持国家研究委员会对泌乳奶山羊能量需求的建议。

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