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首页> 外文期刊>Poultry Science >Oil source and peroxidation status interactively affect growth performance and oxidative status in broilers from 4 to 25 d of age
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Oil source and peroxidation status interactively affect growth performance and oxidative status in broilers from 4 to 25 d of age

机译:油源和过氧化状态相互作用地影响来自4至25天的肉鸡的生长性能和氧化地位

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摘要

The objectives of this experiment were to evaluate the effect of oil source and peroxidation status on broiler performance and oxidative stress. Broilers (initial BW 85.1 +/- 7.8 g) were allotted to 40 cages with 5 birds per cage in a completely randomized design. The 4 x 2 factorial arrangement of treatments consisted of oil source (palm oil, soybean oil, flaxseed oil, and fish oil) and peroxidation status (fresh or peroxidized). Broilers were fed experimental diets for 20 d to measure growth performance; on day 21 of the experiment, plasma and liver samples were harvested for analysis of oxidative stress including thiobarbituric acid reactive substances (TBARS), protein carbonyls (PC), 8-hydroxy-2`-deoxyguanosine (8- OH-2dG), glutathione peroxidase activity (GPx) and superoxide dismutase and catalase (CAT). An interaction occurred between oil source and peroxidation status where broilers fed peroxidized oils had reduced ADFI, ADG, G:F, and plasma GPx in all oil sources except for fish oil (P = 0.04). Plasma 8-OH-2dG was increased by feeding peroxidized oils (P = 0.01). An interaction occurred in liver TBARS where broilers fed peroxidized palm oil had greater liver TBARS compared to fresh palm oil (P = 0.09). An interaction was noted for liver PC where broilers fed palm, flaxseed, and fish oil had similar liver PC regardless of peroxidation status, while broilers fed peroxidized soybean oil had increased liver PC compared to the fresh soybean oil diet (P = 0.04). Oil source affected plasma TBARS and 8-OH-2dG (P = 0.01), plasma PC (P = 0.09), liver 8-OH-2dG (P = 0.08), and liver CAT (P = 0.02). Correlations between oil composition with growth performance and oxidative stress markers imply that oil UFA:SFA, p-anisidine value, DDE, total polar compounds, and polymerized triglycerides should be measured as an indicator of oil quality, with growth performance being correlated to plasma TBARS, PC, and GPx. In conclusion, the degree of unsaturation and peroxidation status of dietary oils affected growth performance and markers of oxidative stress in poultry.
机译:该实验的目的是评估油源和过氧化状态对肉鸡性能和氧化应激的影响。肉鸡(初始BW 85.1 +/- 7.8g)分配到40个笼子,每个笼子在完全随机设计中为5只鸟。 4 x 2的治疗排列组成由油源(棕榈油,大豆油,亚麻籽油和鱼油)和过氧化状态(新鲜或过氧化)组成。肉鸡喂食实验饮食20 d以测量生长性能;在实验的第21天,收获血浆和肝脏样品以分析氧化胁迫,包括硫碱酸反应性物质(TBARS),蛋白质羰基(PC),8-羟基-2-脱氧核苷酸(8- OH-2DG),谷胱甘肽过氧化物酶活性(GPX)和超氧化物歧化酶和过氧化氢酶(猫)。油源和过氧化状态之间发生的相互作用,其中喂过过氧化油的肉鸡在除了鱼油的所有油源中的ADFI,ADG,G:F和等离子体GPX减少(P <= 0.04)。通过供给过氧化油来增加血浆8-OH-2DG(p = 0.01)。与新鲜棕榈油相比,肝脏TBAR中发生肝脏TBAR的肉鸡的肉鸡具有更大的肝脏TBARS(P = 0.09)。肝脏PC,饲喂棕榈,亚麻籽和鱼油的肉类,无论过氧化状态如何,肝脏PC都有相互作用,而饲喂过氧化大豆油的肉鸡与新鲜大豆油饮食相比增加了肝PC(P = 0.04)。油源受血浆TBAR和8-OH-2DG(P = 0.01),血浆PC(P = 0.09),肝脏8-OH-2DG(P = 0.08)和肝脏(P = 0.02)。具有生长性能和氧化应激标记物的油组合物的相关性意味着油UFA:SFA,对氨基氨酸值,DDE,总极化化合物和聚合甘油三酯应作为油质的指标测量,具有与等离子体TBAR相关的生长性能,pc和gpx。总之,膳食油的不饱和度和过氧化状态影响家禽中氧化胁迫的生长性能和标志物。

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