饲粮中添加不同脂肪酸组成的红花籽对产后肉牛血清前列腺素F代谢物浓度的影响存在差异。

Mark H J Grant, Brenda M Alexander, Bret W Hess, Jeff D Bottger, Doug L Hixon, Edward A Van Kirk, Terry M Nett, Gary E Moss
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引用次数: 18

摘要

奶牛分娩后前列腺素f2 - α (pgf2α)的合成和分泌水平升高,并对奶牛可育性发情周期的重建产生不同的影响。这些实验的目的是确定不同脂肪酸组成的油籽补充剂是否会对特定的pgf2 α代谢物PGFM的血清浓度产生不同的影响。红花籽补充剂的配方为提供干物质摄入量的5%作为脂肪。试验1:24头产牛在产后80 d分别饲喂对照(甜菜浆-豆粕)或高亚油酸红花籽(78%:18:2n-6)添加剂。添加亚油酸的奶牛血清PGFM浓度高于对照组(P < 0.001)。试验2:36头初产肉牛在产后92 d分别饲喂对照(破碎的玉米-豆粕)、破碎的高亚油酸(76%:18:2n-6)或-油酸(72%:18:1n-9)红花籽补充剂。与试验1一样,亚油酸中血清PGFM浓度高于对照或添加油酸的奶牛(P <或= 0.04)。而在油酸组和对照组中,血清PGFM浓度无显著差异(P = 0.40)。虽然对生殖性能的潜在影响仍有待证实,但与对照补充剂相比,富含亚油酸而不含油酸的膳食油补充剂增加了血清中PGFM的浓度。
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Dietary supplementation with safflower seeds differing in fatty acid composition differentially influences serum concentrations of prostaglandin F metabolite in postpartum beef cows.

Synthesis and secretion of prostaglandin F2alpha (PGF2alpha) is elevated following parturition and exerts divergent effects on the re-establishment of fertile estrous cycles in cows. The objective of these experiments was to determine if oil seed supplements differing in fatty acid composition differentially influence serum concentrations of the specific PGF2alpha metabolite, PGFM. Safflower seed supplements were formulated to provide 5% of dry-matter intake as fat. In Trial 1, 24 multiparous beef cows were individually fed control (beet pulp-soybean meal) or cracked high-linoleate safflower seed (78% 18:2n-6) supplements for 80 d postpartum. Linoleate supplemented cows had greater (P < 0.001) serum concentrations of PGFM than control cows. In Trial 2, primiparous beef cows (n = 36) were individually fed control (cracked corn-soybean meal), cracked high-linoleate (76% 18:2n-6) or -oleate (72% 18:1n-9) safflower seed supplements for 92 d postpartum. As in Trial 1, serum concentrations of PGFM were greater (P < or = 0.04) in linoleate than control or oleate supplemented cows. Serum concentrations of PGFM, however, did not differ (P = 0.40) among oleate and control supplemented cows. Although potential impacts on reproductive performance remain to be proven, dietary oil supplements high in linoleate, but not oleate, increased serum concentrations of PGFM compared to control supplements.

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