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妊娠后期荷斯坦奶牛妊娠子宫内能量和蛋白质的生长与积累

Growth and accretion of energy and protein in the gravid uterus during late pregnancy in Holstein cows.

作者信息

Bell A W, Slepetis R, Ehrhardt R A

机构信息

Department of Animal Science, Cornell University, Ithaca, NY 14853-4801, USA.

出版信息

J Dairy Sci. 1995 Sep;78(9):1954-61. doi: 10.3168/jds.s0022-0302(95)76821-7.

Abstract

Multiparous Holstein cows (n = 18) were bred artificially to the same bull and then slaughtered at times ranging from 190 to 270 d postconception to assess accretion of energy, protein, fat, and ash by the conceptus. Wet weights, dry weights, and concentrations of energy, CP, crude fat, and ash were obtained for the following: fetus, combined amniotic and allantoic fluids, fetal membranes, cotyledons, caruncles, and uterine tissues. Rates of accumulation of these components in the gravid uterus (sum of all uterine contents) and fetus were described by linear or quadratic equations. Estimated rates of accretion of energy in the gravid uterus (i.e., conceptus) increased from 567 kcal/d at 190 d of gestation to 821 kcal/d at 270 d of gestation; corresponding rates of accretion of CP were 62 and 117 g/d. These daily rates represent net energy and protein requirements for conceptus growth during late pregnancy in mature Holstein cows. Conversion of predicted net energy to metabolizable energy requirements for conceptus growth, using the accepted efficiency factor of .14, yielded estimates that were consistent with current NRC recommendations. Factorial estimation of absorbed protein requirements is hampered by lack of precise information on the efficiency with which absorbed AA are deposited in conceptus tissues.

摘要

选取了18头经产荷斯坦奶牛,人工授精于同一头公牛,然后在受孕后190至270天期间屠宰,以评估孕体对能量、蛋白质、脂肪和灰分的积累情况。测定了以下组织的湿重、干重以及能量、粗蛋白(CP)、粗脂肪和灰分的含量:胎儿、羊水和尿囊液、胎膜、绒毛叶、肉阜以及子宫组织。通过线性或二次方程描述了这些成分在妊娠子宫(所有子宫内容物之和)和胎儿中的积累速率。妊娠子宫(即孕体)中能量的估计积累速率从妊娠190天时的567千卡/天增加到妊娠270天时的821千卡/天;相应的粗蛋白积累速率分别为62克/天和117克/天。这些每日速率代表了成熟荷斯坦奶牛妊娠后期孕体生长所需的净能量和蛋白质。利用公认的0.14的效率因子,将预测的净能量转换为孕体生长所需的可代谢能量需求,得到的估计值与美国国家研究委员会(NRC)目前的建议一致。由于缺乏关于吸收的氨基酸在孕体组织中沉积效率的精确信息,阻碍了对吸收蛋白质需求的析因估计。

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