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Effect of dietary bacterial lysine by-product meal supplementation on growth performance and excretion of purine base derivatives in growing-finishing pigs

机译:日粮细菌赖氨酸副产物粉对生长肥育猪生长性能和嘌呤碱衍生物排泄的影响

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摘要

The present study was designed to test the hypothesis that bacterial lysine by-product meal (BLBM) as a substitute of soybean meal in the diet on equivalent crude protein basis can regulate growth performance and the excretion of purine base derivatives in growing-finishing pigs. One hundred Duroc×Landrance×Yorkshire crossbred castrated male pigs (41.7±3.9 kg body weight) were randomly allotted to 4 treatments with 5 replications (pens) per treatment, and 5 pigs per pen. Dietary treatments were: 1) CON (basal control diet), 2) BLBM-10 (BLBM replaced 10% crude protein in soybean meal), 3) BLBM-25 (BLBM replaced 25% crude protein in soybean meal), and 4) BLBM-50 (BLBM replaced 50% crude protein in soybean meal). In addition, two metabolism trials were conducted to determine the impact of BLBM on nitrogen metabolism and the excretion of purine base derivatives. Compared with the control pigs, BLBM-10 and BLBM-25 pigs had similar average daily gain (ADG), average daily feed intake (ADFI), and gain-to-feed ratio (G/F) during the growing period. The BLBM-50 treatment decreased ADG and elevated G/F during the growing and the whole period (P<0.05). The BLBM-50 treatment had greater ADFI and G/F than other treatments during the finishing period (P<0.05). The nitrogen digestibility and nitrogen biological value in pigs fed BLBM-10 and BLBM-25 diets were similar to the CON treatment, while those criteria in pigs fed BLBM-50 diets were lower than those on the CON treatment (P<0.05). The serum urea nitrogen values increased in response to BLBM supplementation during the growing and finishing period (P<0.05), and the pigs had the greatest urea nitrogen concentrations when they were fed the BLBM-50 diets (P<0.05). The urinary excretion of purine base derivatives and the concentrations of uric acid, xanthine, and hypoxanthine in plasma increased with increasing dietary content of BLBM (P<0.05). In conclusion, the nitrogen metabolism in growing-finishing pigs was unaffected when up to 25% of crude protein in soybean meal was replaced by BLBM. The excretion of purine base derivatives were increased by BLBM levels in diets. It is feasible that BLBM substitutes 25% of crude protein in soybean meal for growing-finishing pig diets.
机译:本研究旨在检验以下假设:以等价粗蛋白为基础的日粮中细菌赖氨酸副产物粉(BLBM)代替豆粕可调节生长肥育猪的生长性能和嘌呤碱衍生物的排泄。将100只Duroc×Landrance×Yorkshire杂交去势雄性猪(41.7±3.9 kg体重)随机分配到4种处理中,每种处理重复5次(围栏),每只猪5头。饮食处理包括:1)CON(基本控制饮食),2)BLBM-10(BLBM代替豆粕中10%的粗蛋白),3)BLBM-25(BLBM代替豆粕中25%的粗蛋白)和4) BLBM-50(BLBM代替了豆粕中50%的粗蛋白)。此外,进行了两项代谢试验,以确定BLBM对氮代谢和嘌呤碱基衍生物排泄的影响。与对照猪相比,BLBM-10和BLBM-25猪在生长期间的平均日增重(ADG),平均日采食量(ADFI)和增重比(G / F)相似。在生长期间和整个时期,BLBM-50处理均降低了ADG并提高了G / F(P <0.05)。在完成期间,BLBM-50处理的ADFI和G / F高于其他处理(P <0.05)。饲喂BLBM-10和BLBM-25日粮的猪的氮消化率和氮生物学价值与CON处理相似,而饲喂BLBM-50日粮的猪的氮消化率和标准低于CON处理(P <0.05)。在生长和肥育期,血清尿素氮值随BLBM的添加而增加(P <0.05),当饲喂BLBM-50日粮时,猪的尿素氮浓度最高(P <0.05)。随着日粮中BLBM含量的增加,嘌呤碱衍生物的尿排泄量以及血浆中尿酸,黄嘌呤和次黄嘌呤的浓度增加(P <0.05)。总之,当用BLBM代替豆粕中高达25%的粗蛋白时,生长肥育猪的氮代谢不会受到影响。饮食中BLBM水平可增加嘌呤碱衍生物的排泄。用BLBM替代豆粕中25%的粗蛋白来替代猪的生长日粮是可行的。

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