Impact of increasing dietary standardized ileal digestible arginine to lysine ratio from 0.85 to 1.15 and water-based arginine supplementation on growth performance and gut integrity of weaned pigs.

IF 1.3 Q3 AGRICULTURE, DAIRY & ANIMAL SCIENCE Translational Animal Science Pub Date : 2024-07-10 eCollection Date: 2024-01-01 DOI:10.1093/tas/txae102
Chloe Hagen, Dalton Humphrey, Caitlyn Wileman, Keith Haydon, Laura Greiner
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Abstract

The objective of this experiment was to assess the influence of arginine (Arg) supplementation in water and/or feed on the growth performance and gastrointestinal health of newly weaned pigs. Two hundred and forty pigs (5.06 kg; PIC, Hendersonville, TN) were randomly allocated into 80 mixed-sex pens (3 pigs/pen) and subjected to a 2 × 4 factorial design. Two levels of Arg were supplemented in water (0% or 8% stock, dosed through a 1:128 proportioner) for the first phase (days 0 to 7), and four dietary arginine levels (0.85, 0.95, 1.05, and 1.15) standardized ileal digestible (SID) Arg to Lysine (Lys) ratios for the first two phases (days 0 to 7 and 7 to 21). All treatments were provided a common diet (0.96 SID Arg:Lys) for the last phase days 21 to 42. One pig per pen underwent a dual sugar absorption test of lactulose at 500 mg/kg and mannitol at 50 mg/kg of body weight (BW) via gastric tube on days 7 and 21 postweaning, with blood plasma collected 4 h later. The pig tested on day 7 was subsequently euthanized for intestinal tissue collection. Pen growth performance and feed disappearance were evaluated for 3 phases: days 0 to 7, 7 to 21, and 21 to 42 postweaning. The statistical analysis used linear models to examine the effects of SID Arg:Lys in the feed, Arg level in water, and their interactions, with pen as the experimental unit. Orthogonal contrasts were used to test the linear and quadratic effects of increasing SID Arg:Lys in the diet. Growth performance during the first period exhibited variability, reflected by negative gain-to-feed (G:F) ratios, caused by the enteric health challenge. Consequently, data were analyzed separately for each phase. Increasing dietary SID Arg:Lys caused a linear improvement (P = 0.04) in final BW (18.47 and 21.90 kg, for 0.85 and 1.15 SID Arg:Lys, respectively). A trend (P = 0.09) suggested a linear impact of dietary SID Arg:Lys on average daily gain during days 21 to 42. Arg supplementation, whether administered through water or diet, did not affect lactulose and mannitol absorption on both days 7 and 21, nor did it alter histological measurements in the collected ileum tissues on day 7 postweaning. In conclusion, increasing dietary SID Arg:Lys increased final BW but had no clear impacts on intestinal health within the parameters measured, potentially impacted by the rotavirus diagnosis in the first week post-wean.

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将日粮标准化回肠可消化精氨酸与赖氨酸的比例从 0.85 提高到 1.15 以及以水为基础补充精氨酸对断奶猪生长性能和肠道完整性的影响。
本实验的目的是评估在饮水和/或饲料中添加精氨酸(Arg)对刚断奶猪的生长性能和胃肠道健康的影响。240 头猪(5.06 千克;PIC,亨德森维尔,田纳西州)被随机分配到 80 个男女混合的猪圈(3 头猪/圈),并采用 2 × 4 的因子设计。第一阶段(0 至 7 天)在水中补充两种水平的 Arg(0% 或 8%,通过 1:128 配比器配比),前两个阶段(0 至 7 天和 7 至 21 天)在日粮中补充四种水平(0.85、0.95、1.05 和 1.15)的标准化回肠可消化(SID)Arg 与赖氨酸(Lys)比率。在最后一个阶段(第 21 天至第 42 天),所有处理均采用普通日粮(0.96 SID Arg:Lys)。每栏一头猪在断奶后第 7 天和第 21 天通过胃管接受乳糖(500 毫克/千克体重)和甘露醇(50 毫克/千克体重)的双重糖吸收试验,4 小时后收集血浆。第 7 天接受测试的猪随后被安乐死,以便采集肠道组织。在断奶后的第 0 至 7 天、第 7 至 21 天和第 21 至 42 天这 3 个阶段对猪栏的生长性能和饲料消失量进行评估。统计分析采用线性模型,以栏为实验单位,考察饲料中 SID Arg:Lys 的影响、水中 Arg 的含量及其交互作用。正交对比用于检验日粮中 SID Arg:Lys 增加的线性和二次效应。第一阶段的生长表现具有变异性,肠道健康挑战导致的负增重-采食(G:F)比反映了这一点。因此,对每个阶段的数据进行了单独分析。增加日粮 SID Arg:Lys 可使最终体重线性增加(P = 0.04)(0.85 和 1.15 SID Arg:Lys 分别为 18.47 和 21.90 千克)。一种趋势(P = 0.09)表明,日粮 SID Arg:Lys 对第 21 天至第 42 天的平均日增重有线性影响。无论是通过饮水还是日粮补充 Arg,都不会影响断奶后第 7 天和第 21 天的乳糖和甘露醇吸收,也不会改变断奶后第 7 天收集的回肠组织的组织学测量结果。总之,增加日粮 SID Arg:Lys 可增加最终体重,但在测量的参数范围内对肠道健康没有明显影响,断奶后第一周的轮状病毒诊断可能会对肠道健康产生影响。
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来源期刊
Translational Animal Science
Translational Animal Science Veterinary-Veterinary (all)
CiteScore
2.80
自引率
15.40%
发文量
149
审稿时长
8 weeks
期刊介绍: Translational Animal Science (TAS) is the first open access-open review animal science journal, encompassing a broad scope of research topics in animal science. TAS focuses on translating basic science to innovation, and validation of these innovations by various segments of the allied animal industry. Readers of TAS will typically represent education, industry, and government, including research, teaching, administration, extension, management, quality assurance, product development, and technical services. Those interested in TAS typically include animal breeders, economists, embryologists, engineers, food scientists, geneticists, microbiologists, nutritionists, veterinarians, physiologists, processors, public health professionals, and others with an interest in animal production and applied aspects of animal sciences.
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