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Effect of Trichoderma reesei Degraded Date Pits Supplementation on Growth Performance, Immunoglobulin Levels, and Intestinal Barrier Functions of Broiler Chickens

机译:Trichoderma Reesei降解日期坑补充肉鸡生长性能,免疫球蛋白水平和肠道阻隔功能的影响

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Background: Date palm (Phoenix dactylifera L.) is a dominant fruit crop in most Arabian countries. Date pits, as a major byproduct which remained after consumption of date flesh, proved to be a valuable source of energy. Objectives: The impact of degraded date pits (DDP) on growth performance, intestinal bacterial population, and expression profiles of intestinal genes in broilers was determined. Recent patents have been established on DDP from the European patent office (EP2586318B1), Hong Kong patent registry office (HK1184642) and by the United States patent and trademark office (US8968729B2 and US10265368B2). Methods: Solid-state degradation system (SSD) was used for the preparation of DDP using Trichoderma reesei. One-day-old Brazilian broiler chicks "Cobb 500" were randomly divided into six treatments with six replicates, which consisted of a normal diet containing only corn-soy (control), diet containing corn-soy + (20%, 50g/100Kg oxytetracycline), diet containing corn-soy + 10% (DDP), diet containing corn-soy + 0.2% mannan oligosaccharides (MOS), diet containing corn-soy + 0.1% mannose, and diet containing corn-soy + 0.2% mannose. Results: There were no significant differences in body weight, feed intake, and feed conversion ratio (FCR) in broilers among the treatments. The bacterial count was significantly decreased in 10% DDP diet-fed broilers, 0.2% MOS and antibiotic diet-fed broilers. Immunoglobulin levels in serum and intestinal contents and expression pattern of genes in jejunum were upregulated in 10% DDP and 0.2% MOS diet-fed broilers. Conclusion: DDP can be used as an energy source for replacing part of corn, mannan oligosaccharide and also recommended as a potential alternative to antimicrobials in broilers diet.
机译:背景:枣棕榈(Phoenix Dactylifera L.)是大多数阿拉伯国家的主要果实作物。日期坑,作为留下日期肉体消耗后留下的主要副产品,被证明是一个有价值的能源来源。目的:测定了肉鸡中肠道生长性能,肠道细菌种群和肉鸡中肠道基因表达谱的影响。来自欧洲专利局(EP2586318B1),香港专利登记处(HK1184642)和美国专利和商标局(US8968729B2和US102653668B2)的DDP已经成立了最近的专利。方法:使用Trichoderma Reesei使用固态降解系统(SSD)用于制备DDP。一天旧的巴西肉鸡雏鸡“Cobb 500”被随机分为六种重复的治疗,其含有仅含玉米(对照)的正常饮食,含有玉米大豆+的饮食(20%,50g / 100kg氧化含量,含玉米+ 10%(DDP)的饮食,含玉米+ 0.2%甘油寡糖(MOS),含有玉米+ 0.1%甘露糖的饮食,含有玉米大豆+ 0.2%甘露糖的饮食。结果:治疗中肉鸡中体重,饲料摄入和饲料转化率(FCR)没有显着差异。 10%DDP饮食喂食肉鸡,0.2%MOS和抗生素喂食肉鸡的细菌计数显着降低。在10%DDP和0.2%MOS饮食饮食肉鸡中升高了血清和肠内容物中的免疫球蛋白水平和Jejunum基因的表达模式。结论:DDP可用作替代玉米,甘露甘油糖的一部分的能源,也推荐作为肉鸡饮食中抗微生物的潜在替代品。

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