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热氧化大豆油对生长猪生长性能、消化率和肠道完整性的影响。

Influence of feeding thermally peroxidized soybean oil on growth performance, digestibility, and gut integrity in growing pigs.

机构信息

Department of Animal Science, Iowa State University, Ames, IA.

USDA-ARS National Laboratory for Agriculture and the Environment, Ames, IA.

出版信息

J Anim Sci. 2018 Mar 6;96(2):558-569. doi: 10.1093/jas/sky004.

Abstract

Consumption of highly peroxidized oils has been shown to affect pig performance and oxidative status through the development of compounds which differ according to how oils are thermally processed. The objective of this study was to evaluate the effect of feeding varying degrees of peroxidized soybean oil (SO) on parameters of growth performance; lipid, N, and GE digestibility, gut integrity in growing pigs, and plasma Trp. Fifty-six barrows (25.3 ± 3.3 kg initial BW) were randomly assigned to one of four diets containing either 10% fresh SO (22.5 °C) or thermally processed SO (45 °C for 288 h, 90 °C for 72 h, or 180 °C for 6 h), each with an air infusion of 15 L/min. Peroxide values for the 22.5, 45, 90, and 180 °C processed SO were 2.0, 96, 145, and 4.0 mEq/kg, respectively; 2,4-decadienal values for 22.5, 45, 90, and 180 °C processed SO were 2.11,5.05, 547.62, and 323.57 mg/kg, respectively; and 4-hydroxynonenal concentrations of 0.05, 1.05, 39.46, and 25.71 mg/kg with increasing SO processing temperature. Pigs were individually housed and fed ad libitum for a 49 d period to determine the effects of SO peroxidation status on growth performance, including a metabolism period for assessing GE and N digestibility, and N retention. In vivo urinary lactulose to mannitol ratio was also assessed to evaluate potential changes in small intestinal integrity. Although there were no differences observed in ADFI (P = 0.19), ADG was decreased in pigs fed 90 °C SO diet (P = 0.01), while G:F was increased (P = 0.02) in pigs fed 45 °C SO diet compared to the other SO diets. Pigs fed the 90 °C processed SO had the lowest (P = 0.01) DE as a percentage of GE, whereas ME as a percentage of DE was lowest (P = 0.05) in pigs fed the 180 °C SO and 90 °C SO followed by 45 °C SO and fresh SO. Ether extract (EE) digestibility was lowest (P = 0.01) in pigs fed 90 °C SO followed by pigs fed 180 °C SO, 45 °C SO, and fresh SO. The percent of N retained was greatest (P = 0.01) in pigs fed fresh SO followed by pigs fed 45 °C SO, 180 °C SO, and 90 °C, respectively. There were no differences observed among SO treatments for urinary lactulose to mannitol ratio (P = 0.60). Pigs fed SO processed at 90 °C and 180 °C had lower concentrations (P < 0.01) of serum Trp compared to pigs fed the 22.5 °C and 45 °C SO treatments. The presence of lipid peroxidation products, namely several aldehydes, contained in the 90 °C SO diet reduced ADG, GE and EE digestibility, and N balance, but had no impact on gut permeability.

摘要

高度过氧化物化的油的消耗已被证明会通过不同的化合物的发展来影响猪的性能和氧化状态,这取决于油的热加工方式。本研究的目的是评估不同程度过氧化物化的大豆油(SO)对生长性能参数的影响;脂质、N 和 GE 消化率、生长猪的肠道完整性以及血浆色氨酸。56 头阉公猪(初始 BW 为 25.3 ± 3.3 千克)随机分配到四种日粮中的一种,日粮中含有 10%新鲜 SO(22.5°C)或经过热加工的 SO(45°C 处理 288 小时、90°C 处理 72 小时或 180°C 处理 6 小时),每种日粮都有 15 L/min 的空气输注。22.5°C、45°C、90°C 和 180°C 处理 SO 的过氧化物值分别为 2.0、96、145 和 4.0 mEq/kg;22.5°C、45°C、90°C 和 180°C 处理 SO 的 2,4-癸二烯醛值分别为 2.11、5.05、547.62 和 323.57 mg/kg;4-羟基壬醛浓度分别为 0.05、1.05、39.46 和 25.71 mg/kg,随着 SO 加工温度的升高而增加。猪单独饲养,自由采食 49 天,以确定 SO 过氧化物状态对生长性能的影响,包括用于评估 GE 和 N 消化率和 N 保留的代谢期。还评估了体内尿乳果糖与甘露醇的比值,以评估小肠完整性的潜在变化。尽管 ADG 没有差异(P = 0.19),但 90°C SO 日粮组的 ADG 降低(P = 0.01),而 45°C SO 日粮组的 G:F 增加(P = 0.02),与其他 SO 日粮相比。90°C 处理 SO 组的 DE 作为 GE 的百分比最低(P = 0.01),而 ME 作为 DE 的百分比最低(P = 0.05)在 180°C SO 和 90°C SO 组中,其次是 45°C SO 和新鲜 SO。90°C SO 组的 EE 消化率最低(P = 0.01),其次是 180°C SO、45°C SO 和新鲜 SO 组的猪。新鲜 SO 组的氮保留率最高(P = 0.01),其次是 45°C SO、180°C SO 和 90°C SO 组的猪。SO 处理组之间的尿乳果糖与甘露醇比值无差异(P = 0.60)。90°C 和 180°C 处理的 SO 组的血清色氨酸浓度较低(P < 0.01),与 22.5°C 和 45°C SO 处理组的猪相比。90°C SO 日粮中存在的脂质过氧化产物,即几种醛,降低了 ADG、GE 和 EE 消化率以及 N 平衡,但对肠道通透性没有影响。

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