十二指肠输注trans - 10、cis12-CLA对高、低精料饲粮配卷油菜籽对奶山羊产奶性能和乳脂肪酸分布的影响

Patricia Vilhena Dias de Andrade, Philippe Schmidely
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引用次数: 53

摘要

研究了t10、c12-C18:2 (2 g.10 h-1)对8只山羊十二指肠灌胃t10、c12-C18:2 3 d后,再灌胃2 d脱脂乳(SM)对泌乳量和乳脂脂肪酸(FA)分布的影响。按低(L = 45%)或高(H = 65%)不含(CS0)或含(CS20)油菜籽(占精料DM的20%)的精料比例的因子安排,将山羊分为4种饲粮。在注射前(基础)、注射t10、注射c12-C18:2和注射SM期间采集乳样。在t10,c12-C18:2输注的第3天,乳脂中的t10,c12-C18:2从无法检测到的基础值增加到平均占总FA的0.39%。DMI、产奶量、乳脂、蛋白质和乳糖的含量和产奶量在基础组和t10、c12-C18:2组之间相似。在t10、c12-C18:2输注期间,4 - 16C饱和脂肪酸的浓度没有变化,而C18:0增加,特别是在CS20组的乳脂中。t10,c12-C18:2输注增加了t10-和t11-C18:1 (H-CS20组t11-C18:1减少),并降低了乳脂中的c9,t11-C18:2,特别是H-CS20组。t10,c12-C18:2输注降低了c9,t11-C18:2/t11-C18:1比值,特别是在CS0组。结果表明,乳山羊的乳腺脂肪生成并没有减少t10,c12-C18:2,但长链脂肪酸的去饱和程度似乎与奶牛一样受到影响。乳脂去饱和酶指数的降低可能是t10、c12-C18:2的直接作用,或者是通过t10- c18:1的增加介导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of duodenal infusion of trans10,cis12-CLA on milk performance and milk fatty acid profile in dairy goats fed high or low concentrate diet in combination with rolled canola seed.

The effect of t10,c12-C18:2 on milk production, and fatty acid (FA) profile of milk fat was studied in 8 goats infused duodenally with t10,c12-C18:2 (2 g.10 h-1) during 3 days, followed by a 2-day infusion of skim milk (SM). The goats were assigned to 4 diets in a factorial arrangement constituted by low (L = 45%) or high (H = 65% of the diet DM) percentage of concentrate without (CS0) or with (CS20) rolled canola seed (20% of the concentrate DM). Milk samples were collected before (basal), and during the t10,c12-C18:2 and SM infusions. The t10,c12-C18:2 in milk fat increased from undetectable basal values to an average of 0.39% of total FA in the 3rd day of t10,c12-C18:2 infusion. DMI, milk yield, and the contents and yield of milk fat, protein, and lactose were similar between basal and the t10,c12-C18:2 infusion. The concentration of saturated FA with 4 to 16C did not change during the t10,c12-C18:2 infusion, whereas C18:0 increased, particularly in the milk fat of the CS20 group. The t10,c12-C18:2 infusion increased the t10- and t11-C18:1 (except a reduction in t11-C18:1 for the H-CS20 group), and it decreased the c9,t11-C18:2 in milk fat, particularly for the H-CS20 group. The t10,c12-C18:2 infusion reduced the c9,t11-C18:2/t11-C18:1 ratio, particularly for the CS0 group. The results indicate that mammary lipogenesis in dairy goats was not decreased by t10,c12-C18:2, however, the desaturation of long chain FA appeared to be equally affected as in dairy cows. This reduction in the desaturase index of milk fat could have been a direct effect of t10,c12-C18:2, or mediated via an increase in t10-C18:1.

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