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首页> 外文期刊>Poultry Science >Protein source and dietary structure influence growth performance, gut morphology, and hindgut fermentation characteristics in broilers
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Protein source and dietary structure influence growth performance, gut morphology, and hindgut fermentation characteristics in broilers

机译:蛋白质来源和饮食结构影响肉鸡的生长性能,肠道形态和后肠发酵特性

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An experiment with 210 male (Ross 308) 1-d-old broilers was conducted to test the hypothesis that a coarse diet improves performance of broilers fed a poorly digestible protein source. A highly digestible diet based on soybean meal was gradually replaced by a low digestible diet based on rapeseed meal (RSM) in 5 steps (RSM-0%, RSM-25%, RSM-50%, RSM-75%, and RSM-100%). Two diet structures (fine and coarse) were used as an additional factor. These 2 factors and their interactions were tested at different ages in a factorial arrangement with 10 dietary treatments. An increase in indigestible dietary protein negatively affected feed intake (P = 0.003), BW gain (P = 0.008), and feed conversion ratio (P = 0.034). This increase in dietary indigestible protein contents resulted in a decrease (P = 0.001) in total cecal volatile fatty acid concentration from 209.1 to 125.9 mmol/kg of DM digesta in broilers with increasing RSM in diets. Increase in the indigestible protein level, from RSM-0% to RSM-100%, resulted in a decrease (P = 0.042) in villus heights (1,782 vs. 1,574 mu m), whereas crypt depths increased (P = 0.021; 237 vs. 274 mu m). A coarse diet improved feed intake (P = 0.006), BW gain (P = 0.014), and feed conversion ratio (P = 0.009). Broilers fed coarse diets had approximately 11, 24, and 10% lower relative empty weights of the crop, proventriculus, and jejunum, respectively, whereas a 15% heavier gizzard was found compared with those fed the fine diets. Dietary coarseness resulted in approximately 16% lower gizzard pH, 21% greater villus heights, 27% lower crypt depths, 24% reduced branched-chain fatty acids, and 12% lower biogenic amines in the cecal digesta compared with broilers fed fine diets. In conclusion, feeding coarse particles improved broiler performance irrespective of digestibility of the diet. Hindgut protein fermentation can be reduced by coarse grinding of the diet.
机译:进行了210头雄性(Ross 308)1-d肉仔鸡的实验,以检验以下假设:粗饲料可改善饲喂易消化蛋白质源的肉仔鸡的性能。基于豆粕的高消化率饮食通过5个步骤(RSM-0%,RSM-25%,RSM-50%,RSM-75%和RSM- 100%)。两种饮食结构(精细和粗略)被用作附加因素。这两种因素及其相互作用在10种饮食疗法中以因子分解方式在不同年龄进行了测试。不可消化的饮食蛋白质的增加对饲料摄入量(P = 0.003),体重增加(P = 0.008)和饲料转化率(P = 0.034)产生负面影响。饮食中不可消化蛋白质含量的增加导致肉仔鸡总盲肠挥发性脂肪酸浓度从209.1降低至125.9 mmol / kg DM消化物,其中饮食中的RSM升高。不能消化的蛋白质水平从RSM-0%增加到RSM-100%,导致绒毛高度降低(P = 0.042)(1,782对1,574μm),而隐窝深度增加(P = 0.021; 237 vs 274微米)粗饲料可以提高饲料摄入量(P = 0.006),体重增加(P = 0.014)和饲料转化率(P = 0.009)。饲喂粗饲料的肉鸡的相对空重分别降低了11%,24%和10%,相对于饲喂精饲料的肉鸡,空izz重了15%。与饲喂优质日粮的肉鸡相比,日粮粗饲料可降低g的​​pH值约16%,绒毛高度高21%,隐窝深度低27%,支链脂肪酸含量降低24%,生物胺含量降低12%。总之,不管日粮的消化率如何,饲喂粗颗粒都能改善肉鸡的生产性能。日粮的粗磨可以减少后肠蛋白的发酵。

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