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首页> 外文期刊>Journal of Animal Science >The contribution of digestible and metabolizable energy from high-fiber dietary ingredients is not affected by inclusion rate in mixed diets fed to growing pigs
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The contribution of digestible and metabolizable energy from high-fiber dietary ingredients is not affected by inclusion rate in mixed diets fed to growing pigs

机译:来自高纤维膳食成分的消化和代谢能量的贡献不受饲喂猪生长猪的混合饮食中的包含速率的影响

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Effects of inclusion rate of fiber- rich ingredients on apparent ileal digestibility (AID) and apparent total tract digestibility (ATTD) of GE and on the concentration of DE and ME in mixed diets fed to growing pigs were determined. The hypothesis was that increasing the inclusion rate of fiber decreases digestibility of GE, and thus, the contribution of DE and ME from hindgut fermentation because greater concentrations may reduce the ability of microbes to ferment fiber. Twenty ileal-cannulated pigs (BW: 30.64 +/- 2.09 kg) were allotted to a replicated 10 x 4 incomplete Latin Square design with 10 diets and four 26-d periods. There were 2 pigs per diet in each period for a total of 8 replications per diet. A basal diet based on corn and soybean meal (SBM) and a corn-SBM diet with 30% corn starch were formulated. Six additional diets were formulated by replacing 15% or 30% corn starch by 15% or 30% corn germ meal, sugar beet pulp, or wheat middlings, and 2 diets were formulated by including 15% or 30% canola meal in a diet containing corn, SBM, and 30% corn starch. Effects of adding 15% or 30% of each fiber source to experimental diets were analyzed using orthogonal contrasts and t-tests were used to compare inclusion rates within each ingredient. The AID and ATTD of GE and concentration of DE and ME in diets decreased (P 0.05) with the addition of 15% or 30% canola meal, corn germ meal, sugar beet pulp, or wheat middlings compared with the corn starch diet. However, inclusion rate did not affect the calculated DE and ME or AID and ATTD of GE in any of the ingredients indicating that concentration of DE and ME in ingredients was independent of inclusion rate and utilization of energy from test ingredients was equally efficient between diets with 15% and 30% inclusion. Increased inclusion of fiber in the diet did not influence transit time in the small intestine, but reduced the time of first appearance of digesta in the feces indicating that transit time was reduced in the hindgut of pigs fed high-fiber diets. However, this had no impact on DE and ME or ATTD of GE in test ingredients. In conclusion, fiber reduced the DE and ME in the diet. However, inclusion rate of fiber-rich ingredients in diets did not affect calculated values for DE and ME in feed ingredients indicating that microbial capacity for fermentation of fiber in pigs is not overwhelmed by inclusion of 30% high-fiber ingredients in the diets.
机译:测定了Ge和Me浓缩的纤维富含成分对表观髂骨消化率(辅助)和表观总养料(ATTD)的影响。假设是增加纤维的包容性降低了GE的消化率,因此,由于更大的浓度可以降低微生物至发酵纤维的能力,因此DE和ME的贡献。分配了20颗髂内插管猪(BW:30.64 +/- 2.09千克)以复制的10 x 4不完全拉丁平方设计,10次饮食和四个26d时段。每个时期每次饮食每次饮食每次饮食每次饮食总共8次。配制基于玉米和大豆饭(SBM)和玉米SBM饮食的基础饮食,配制了30%玉米淀粉。通过用15%或30%的玉米果淀粉替代15%或30%的玉米芽,甜菜纸浆或小麦米体,并在含有饮食中包含15%或30%的菜肴玉米,SBM和30%的玉米淀粉。被用于每种成分内包含比较率增加15%或每个纤维源至实验饲料使用正交对比和t检验进行分析的30%的影响。饮食中Ge和De和Me浓度的援助和attd(p <0.05),加入15%或30%的菜籽粕,玉米胚芽膳食,糖甜菜浆或小麦米德林与玉米淀粉饮食相比。然而,包含率不会影响任何成分中的GE的计算的DE和ME或ADD和ATTD,表明将DE和ME中的成分浓度与包含速率无关,并且从试验成分中利用能量在饮食中同样有效15%和30%的包容。增加包含纤维的饮食中的在小肠中不影响传输时间,但在降低的指示传输时间粪便食糜第一出现的时间在猪的后肠降低饲喂高纤维饮食。然而,这对测试成分的GE和ME或ATTD没有影响。总之,纤维在饮食中减少了DE和ME。然而,饮食中富含纤维成分的包容性并未影响DE和ME中的饲料成分的计算值,表明猪中纤维发酵的微生物能力并不是通过在饮食中包含30%的高纤维成分而淹没。

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