日粮葡萄糖释放动力学模式对仔猪肠道细胞氮利用率、门静脉氨基酸谱和营养物质转运体表达的影响

IF 7 1区 农林科学 Q1 Agricultural and Biological Sciences Journal of Animal Science and Biotechnology Pub Date : 2024-03-18 DOI:10.1186/s40104-024-01000-z
Zexi Li, Yunfei Li, Yufei Zhao, Guifu Wang, Rujie Liu, Yue Li, Qamar Aftab, Zewei Sun, Qingzhen Zhong
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引用次数: 0

摘要

促进猪消化道中葡萄糖和氨基酸的同步释放可有效提高日粮氮的利用率。合理配置日粮淀粉源,探索适宜的日粮葡萄糖释放动力学,可促进日粮葡萄糖和氨基酸供应的动态平衡。然而,关于不同葡萄糖释放动力学曲线的日粮对仔猪氨基酸吸收和门冬氨酸外观的影响的研究还很有限。本研究旨在探讨日粮葡萄糖释放动力学模式对仔猪氮利用、门静脉氨基酸谱和肠道肠细胞中营养物质转运体表达的影响。将 64 头小猪(15.00 ± 1.12 千克)随机分为 4 组,分别饲喂以玉米、玉米/大麦、玉米/高粱或玉米/蚕豆淀粉配制的日粮(日粮代号分别为 A、B、C 或 D)。研究了蛋白质保留率、入口氨基酸和葡萄糖浓度以及氨基酸和葡萄糖转运体 mRNA 的相对表达。采用体外消化法比较日粮的葡萄糖释放情况。通过调整淀粉来源,构建了四种具有不同葡萄糖释放动力学的仔猪日粮。门静脉葡萄糖的体内外观动力学与体外日粮葡萄糖释放动力学一致。B 组仔猪的总氮排泄量减少,而表观氮消化率和氮保留率增加(P < 0.05)。无论在什么时间(早晨饲喂后 2 小时或 4 小时),B 组仔猪的门静脉总游离氨基酸含量和某些氨基酸(Thr、Glu、Gly、Ala 和 Ile)含量均显著高于 A、C 和 D 组(P < 0.05)。聚类分析显示,不同的葡萄糖释放动力学模式导致仔猪门静脉氨基酸模式不同,且随着饲喂时间的延长,门静脉氨基酸模式逐渐减少。不同日粮处理的仔猪肠门His/Phe、Pro/Glu、Leu/Val、Lys/Met、Tyr/Ile和Ala/Gly的相似性较高。在空肠前段,葡萄糖转运体SGLT1与氨基酸转运体B0AT1、EAAC1和CAT1呈显著正相关。淀粉资源的合理分配可调节膳食葡萄糖释放动力学。在本研究中,B组(玉米/大麦)日粮的葡萄糖释放动力学模式优于其他组,这可能通过调节小肠中氨基酸转运体的表达来影响入口氨基酸的含量和模式,从而促进氮在体内的沉积,提高日粮氮的利用效率。
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Effects of the kinetic pattern of dietary glucose release on nitrogen utilization, the portal amino acid profile, and nutrient transporter expression in intestinal enterocytes in piglets
Promoting the synchronization of glucose and amino acid release in the digestive tract of pigs could effectively improve dietary nitrogen utilization. The rational allocation of dietary starch sources and the exploration of appropriate dietary glucose release kinetics may promote the dynamic balance of dietary glucose and amino acid supplies. However, research on the effects of diets with different glucose release kinetic profiles on amino acid absorption and portal amino acid appearance in piglets is limited. This study aimed to investigate the effects of the kinetic pattern of dietary glucose release on nitrogen utilization, the portal amino acid profile, and nutrient transporter expression in intestinal enterocytes in piglets. Sixty-four barrows (15.00 ± 1.12 kg) were randomly allotted to 4 groups and fed diets formulated with starch from corn, corn/barley, corn/sorghum, or corn/cassava combinations (diets were coded A, B, C, or D respectively). Protein retention, the concentrations of portal amino acid and glucose, and the relative expression of amino acid and glucose transporter mRNAs were investigated. In vitro digestion was used to compare the dietary glucose release profiles. Four piglet diets with different glucose release kinetics were constructed by adjusting starch sources. The in vivo appearance dynamics of portal glucose were consistent with those of in vitro dietary glucose release kinetics. Total nitrogen excretion was reduced in the piglets in group B, while apparent nitrogen digestibility and nitrogen retention increased (P < 0.05). Regardless of the time (2 h or 4 h after morning feeding), the portal total free amino acids content and contents of some individual amino acids (Thr, Glu, Gly, Ala, and Ile) of the piglets in group B were significantly higher than those in groups A, C, and D (P < 0.05). Cluster analysis showed that different glucose release kinetic patterns resulted in different portal amino acid patterns in piglets, which decreased gradually with the extension of feeding time. The portal His/Phe, Pro/Glu, Leu/Val, Lys/Met, Tyr/Ile and Ala/Gly appeared higher similarity among the diet treatments. In the anterior jejunum, the glucose transporter SGLT1 was significantly positively correlated with the amino acid transporters B0AT1, EAAC1, and CAT1. Rational allocation of starch resources could regulate dietary glucose release kinetics. In the present study, group B (corn/barley) diet exhibited a better glucose release kinetic pattern than the other groups, which could affect the portal amino acid contents and patterns by regulating the expression of amino acid transporters in the small intestine, thereby promoting nitrogen deposition in the body, and improving the utilization efficiency of dietary nitrogen.
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来源期刊
Journal of Animal Science and Biotechnology
Journal of Animal Science and Biotechnology AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
9.90
自引率
2.90%
发文量
822
审稿时长
17 weeks
期刊介绍: Journal of Animal Science and Biotechnology is an open access, peer-reviewed journal that encompasses all aspects of animal science and biotechnology. That includes domestic animal production, animal genetics and breeding, animal reproduction and physiology, animal nutrition and biochemistry, feed processing technology and bioevaluation, animal biotechnology, and meat science.
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