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Nutritional and metabolic implications of replacing cornstarch with D-xylose in broiler chickens fed corn and soybean meal-based diet(1)

机译:用肉鸡鸡饲喂玉米和大豆膳食的D-木糖的玉米淀粉饲养和代谢含义对玉米和大豆膳食的饮食(1)

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Effects of substituting cornstarch with D-xylose on growth performance, nutrients digestibility, serum metabolites, and expression of select hepatic genes involved in glucose and lipid metabolism were investigated in broiler chickens. A total of 360 one-day-old male Ross chicks were fed 3 diets (n = 24; 5 chicks/cage) for 21 days. A control corn-soybean meal-based diet with 25% cornstarch was formulated to meet specifications. Two additional diets were formulated by substituting cornstarch with 5 or 15% D-xylose w/w. Growth performance and digestibility by index method were determined in 12 replicate cages. Birds in these replicates had free access to feed and water, the BW and feed intake (FI) were monitored weekly and the excreta samples were collected on d 18 to 20. The other 12 replicates were used for blood and liver sampling by serial slaughter. On d 18, baseline (t0) birds were sampled following a 12 h overnight fasting and birds allowed 30 min access to the feed; samples were subsequently taken at 60, 120, 180, 240, and 300 min post feeding. Serum metabolites (glucose, xylose, and insulin) were assayed at all time points, whereas expression of hepatic transcripts was evaluated at zero, 180 and 300 min. Xylose linearly reduced (P < 0.05) FI, BWG, gross energy digestibility, and feed conversion ratio (FCR) but increased (P < 0.05) serum xylose level. Serum glucose and insulin levels were higher (P < 0.05) in the post-fed state compared with baseline, irrespective of treatments. There was an interaction (P < 0.05) between diet and sampling time on the expression of hepatic genes. At t0, xylose linearly increased (P < 0.05) the expression of pyruvate carboxylase, Acetyl Co-A acethyltransferase 2 (ACAT2), and glucose transporter 2. Xylose linearly reduced (P < 0.05) the expression of ACAT2 at 300 min post feeding. In conclusion, 5% or more xylose reduced growth performance and utilization of nutrients linked to hepatic enzymes and transcription factors involved in glucose and lipid metabolism.
机译:肉鸡鸡研究了玉米菌与D-木糖对生长性能的影响,营养消化,培养物消化,血清代谢物和选择肝脏和脂质代谢的选择肝基因的表达。共有360名一天的雄性罗斯小鸡,喂养3次饮食(n = 24; 5只小鸡/笼)21天。制定了一种对照玉米大豆膳食饮食,配制了25%玉米淀粉以满足规格。通过用5或15%D-木糖w / w代替玉米淀粉来配制两种额外的饮食。在12个复制笼中确定了指数方法的生长性能和消化率。这些重复的鸟类可以自由进入饲料和水,每周监测BW和饲料摄入量(FI),并在D 18至20上收集排泄物样品。通过连续屠宰,将其他12种重复用于血液和肝脏采样。在D 18上,在12小时的过夜禁食后对基线(T0)鸟类进行取样,允许30分钟进入饲料;随后在60,120,180,240和300分钟后进行样品。在所有时间点测定血清代谢物(葡萄糖,木糖和胰岛素),而肝转录物的表达在零1,180-300分钟时评价。木糖线性降低(P <0.05)Fi,BWG,总能量消化率和饲料转化率(FCR),但增加(P <0.05)血清木糖水平。与基线相比,血清葡萄糖和胰岛素水平较高(P <0.05),与基线无关治疗。饮食与取样时间之间存在相互作用(P <0.05),对肝基因表达的饮食和取样时间。在T0,木糖线性增加(P <0.05)丙酮酸羧化酶,乙酰基CO-A酰基转移酶2(ACAT2)和葡萄糖转运蛋白2的表达。木糖线性降低(P <0.05)ACAT2在300分钟后的表达。总之,5%或更多的木糖降低的生长性能和与肝酶相关的营养素的利用率和参与葡萄糖和脂质代谢的转录因子。

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