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首页> 外文期刊>Animal and Veterinary Sciences >Effect of the Nutrient Composition of Biodegraded Sweet Orange (Citrus sinensis) Fruit Peel on the Growth Performance of Starter Broiler Chicks
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Effect of the Nutrient Composition of Biodegraded Sweet Orange (Citrus sinensis) Fruit Peel on the Growth Performance of Starter Broiler Chicks

机译:生物降解甜橙(柑橘Sinensis)果皮对起动肉鸡雏鸡生长性能的影响

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A twenty-eight (28) day feeding trial was conducted to determine the nutrient composition of biodegraded sweet orange (Citrus sinensis) fruit peel and its potential as an energy source in the nutrition of starter broiler chicks. Rumen content was collected from freshly slaughtered cattle and, fresh sweet orange fruit peels (SOP) were collected from orange fruit retailers. The rumen content was mixed with water at ratio 1kg: 1Land sieved to obtain rumen filtrate (RF). The fresh sweet orange peels were divided into four equal parts in weight; T1, T2, T3 and T4, and soaked in the rumen filtrate at ratio 1 kg: 1 L in air-tight bags for 12 h, 24 h, 36 h and 48 h, respectively. The biodegraded sweet orange peels (BSOP) were sun-dried to a moisture level of about 10%, milled and each used to replace 30% of maize in the control diet (CD) to obtain broiler starter test diets T_1D, T_2D, T_3D and T_4D, respectively. Chemical analyses were carried out to determine their proximate composition and fibre fractions while, metabolizable energy content was calculated. The results showed that BSOP contained CP, CF, EE, Ash, NFE and metabolizable energy in the range of 6.78%-7.30%, 10.36%-12.30%, 1.88%-2.65%, 7.79%-11.76%, 66.04%-72.46% and 2829.44 kcal/kg-3037.97 kcal/kg, respectively. The BSOP had ADF, NDF, ADL, hemicellulose and cellulose in the range of 19.50%-22.50%, 52.30%-56.70%, 6.80%-8.40%, 32.80%-34.20%and 12.90%-14.40%, respectively. A total of one hundred and eighty day old broiler chicks (Ross 308) were randomly assigned to five dietary treatments replicated three times with equal number and similar weights in a completely randomized design. The experimental diets had significant (p0.05) on the final weight, weight gain feed intake, feed conversion ratio, protein intake, protein efficiency ratio and mortality. The birds fed the BSOP based diets had similar non-significant (p0.05) and inferior values to the birds on the maize based control diet suggesting that time duration of 12 h, 24 h, 36 h and 48 h given for biodegradation of sweet orange peel could not enhance its nutrients. Biodegradation of sweet orange fruit peel for a time frame of 12 h to 48 h yielded a feed ingredient with a relatively high crude fibre, which lowered the growth rate of starter broiler chicks and cannot be used to formulate starter chicks diet at 30% maize replacement.
机译:进行了二十八天(28)日喂养试验,以确定生物降解甜橙(柑橘Sinensis)果皮的营养成分及其作为启动器肉鸡雏鸡营养中的能源的潜力。从新鲜屠宰的牛收集瘤胃含量,从橙色果子零售商收集新鲜甜橙色果皮(SOP)。将瘤胃含量与水相比,比例1kg:1个筛分以获得瘤胃滤液(RF)。将新鲜的甜橙皮剥离分为四个相等的体重; T1,T2,T3和T4,浸泡在瘤胃滤液中,以比例为1kg:1L,分别为12小时,24小时,36h和48小时。将生物降解的甜橙皮(BSOP)晒太阳,水分水平约为10%,磨削,各自用于替代对照饮食(CD)中的30%玉米,以获得肉鸡起动试验饮食T_1D,T_2D,T_3D和分别为t_4d。进行化学分析以确定其近似的组成和纤维级分,而计算可代谢能量含量。结果表明,BSOP含有CP,CF,EE,灰分,NFE和代谢能量,范围为6.78%-7.30%,10.36%-12.30%,1.88%-2.65%,7.79%-11.76%,66.04%-72.46 %和2829.44千卡/ kg-3037.97 kcal / kg。 BSOP具有ADF,NDF,Ad1,半纤维素和纤维素,其范围为19.50%-22.50%,52.30%-56.70%,分别为6.80%-8.40%,分别为32.80%-34.20%和12.90%-14.40%。总共有一百八十日肉鸡(罗斯308)被随机分配到五个饮食治疗,以完全随机设计的相同数量和相似的重量复制三次。实验饮食在最终重量,重量增益进料摄入,饲料转化率,蛋白质摄入,蛋白质效率比和死亡率上具有显着(P <0.05)。喂养基于BSOP的饮食的鸟类对玉米的对照饮食中的鸟类具有相似的非显着(p> 0.05)和差值,表明在为生物降解的甜点提供12小时,24小时,36小时和48小时的时间橙皮不能增强其营养素。甜橙果皮的生物降解为12小时至48小时,产生了具有相对高的粗纤维的饲料成分,从而降低了起始肉鸡雏鸡的生长速率,不能用于在30%玉米替代品中制备起始雏鸡饮食。

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