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首页> 外文期刊>Journal of Animal Science >Impact of improving dietary amino acid balance for lactating sows on efficiency of dietary amino acid utilization and transcript abundance of genes encoding lysine transporters in mammary tissue
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Impact of improving dietary amino acid balance for lactating sows on efficiency of dietary amino acid utilization and transcript abundance of genes encoding lysine transporters in mammary tissue

机译:提高膳食氨基酸平衡对乳氨基酸利用效率的影响及乳腺组织中赖氨酸转运蛋白的饮食氨基酸利用效率和转录物

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Lactating multiparous Yorkshire sows (n = 64) were used in 2 experiments to test the hypothesis that reducing dietary CP intake and improving AA balance through crystalline AA (CAA) supplementation improves apparent dietary AA utilization efficiency for milk production and increases transcript abundance of genes encoding Lys transporter proteins in mammary tissue. In Exp. 1, 40 sows were assigned to 1 of 4 diets: 1) high CP (HCP; 16.0% CP, as-fed basis; analyzed concentration), 2) medium-high CP (MHCP; 15.7% CP), 3) medium-low CP (MLCP; 14.3% CP), and 4) low CP (LCP; 13.2% CP). The HCP diet was formulated using soybean meal and corn as the only Lys sources. The reduced-CP diets contained CAA to meet estimated requirements for essential AA that became progressively limiting with reduction in CP concentration, that is, Lys, Ile, Met + Cys, Thr, Trp, and Val. Dietary standardized ileal digestible (SID) Lys concentration was 80% of the estimated requirement. In Exp. 2, 24 sows were assigned to the HCP or LCP diets. In Exp. 1, blood samples were postprandially collected 15 h on d 3, 7, 14, and 18 of lactation and utilization efficiency of dietary AA for milk production was calculated during early (d 3 to 7) and peak (d 14 to 18) lactation. Efficiency values were estimated from daily SID AA intakes and milk AA yield, with corrections for maternal AA requirement for maintenance and AA contribution from body protein losses. In Exp. 2, mammary tissue was biopsied on d 4 and 14 of lactation to determine the mRNA abundance of genes encoding Lys transporter proteins. In peak lactation, Lys, Thr, Trp, and Val utilization efficiency increased with decreasing dietary CP (linear for Trp and Val, P 0.05; in sows fed the MHCP diet vs. sows fed the HCP diet for Lys and Thr, P 0.05). Total essential and nonessential 15-h postprandial serum AA concentrations increased with decreasing dietary CP (linear, P = 0.09 and P 0.05, respectively), suggesting increased maternal body protein mobilization. Transcript abundance of several genes involved in Lys transport in mammary tissue did not differ between sows fed the LCP and HCP diets. Feeding lactating sows low-CP diets supplemented with CAA increases the efficiency of utilizing dietary Lys, Thr, Trp, and Val for milk protein production but is unrelated to abundance in mRNA of genes encoding Lys transport proteins in the mammary gland. Dietary Lys utilization for milk protein production in lactating sows appears to be optimized when crystalline Lys is included at a minimum of 0.10% in a diet containing 15.70% CP.
机译:哺乳期多子约克夏母猪(N = 64)在2个实验用来测试其降低膳食CP摄入和通过结晶AA改善AA平衡(CAA)的补充提高编码奶产量和增加转录物丰度的基因的明显的膳食AA利用效率的假说赖氨酸转运蛋白在乳腺组织。在exp。 1,40头母猪被分配到1 4的饮食:1)高CP(HCP; 16.0%CP,作为喂养的基础;分析浓度),2)中高CP(MHCP; 15.7%CP),3)中期低CP(MLCP; 14.3%CP),以及4)低CP(LCP; 13.2%CP)。使用豆粕和玉米作为唯一赖氨酸源的HCP组日粮。减小-CP饮食包含CAA以满足必需氨基酸估计所需,成为与逐步降低CP浓度,即,赖氨酸,异亮氨酸,蛋氨酸+胱氨酸,苏氨酸,色氨酸,和Val限制性的。饮食标准回肠可消化(SID)赖氨酸浓度的估计所需的80%。在exp。 2,24头母猪被分配到HCP或LCP饮食。在exp。如图1所示,血液样品餐后收集在d 3,7,14 15小时,并在早期(d 3〜7)和峰(d 14〜18)泌乳计算泌乳和膳食AA牛奶生产的利用效率的18。效率值是从每天SID AA摄入量和牛奶产量AA估计,与用于校正从体蛋白损失维护和AA贡献母体AA要求。在exp。 2,乳房组织进行活检上d 4和哺乳期,以确定mRNA丰度编码赖氨酸转运蛋白基因的14。在峰泌乳,赖氨酸,苏氨酸,色氨酸,和Val的利用效率提高随膳食CP(线性保护Trp和Val,P&0.05;在母猪饲喂MHCP饮食对母猪饲喂HCP饮食的Lys和Thr,P < 0.05)。 (;分别0.05,直链的,P = 0.09和P&LT),提示增加母体蛋白动员随膳食CP总必需和非必需15小时餐后血清AA浓度增加。转录物丰参与赖氨酸运输几个基因在乳腺组织没有母猪之间不同的饲喂LCP和HCP饮食。补充有CAA喂养母猪泌乳低CP饮食增加利用日粮赖氨酸,苏氨酸,色氨酸,和Val牛奶蛋白质生产的效率,但是无关的丰度的mRNA在乳腺中的Lys编码转运蛋白的基因。当包括在含有15.70%CP饮食的最小的0.10%结晶的Lys被优化日粮赖氨酸利用率乳蛋白产量泌乳母猪出现。

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