Jeon Se Min, Hosseindoust Abdolreza, Choi Yo Han, Kim Min Ju, Kim Kwang Yeol, Lee Jun Hyung, Kil Dong Yong, Kim Beob Gyun, Chae Byung Jo
Department of Animal Resources Science, College of Animal Life Sciences, Kangwon National University, Chuncheon 24341, South Korea.
Swine Division, National Institute of Animal Science, Rural Development Administration, Cheonan 31000, South Korea.
Anim Nutr. 2019 Dec;5(4):359-365. doi: 10.1016/j.aninu.2019.07.001. Epub 2019 Jul 29.
The present study was conducted to test whether the dietary supplementation of β-mannanase affects amino acids (AA) digestibility, metabolizable energy (ME) contents of corn, wheat, soybean meal, distillers dried grains with solubles, and palm kernel meal (PKM), nutrient digestibility, and growth performance of pigs. In Exp. 1, 22 cannulated pigs were used for 10 dietary treatments including 5 feed ingredients and 2 β-mannanase concentrations (0 and 0.5 g/kg of the diet) in 6 periods in an incomplete Latin square design to determine the AA and energy digestibility. In Exp. 2, 200 growing pigs were randomly allotted to 4 treatments with 2 nutrient levels (high and low) and 2 concentrations of β-mannanase (2 × 2 factorial arrangement) in 2 phases (phase 1, d 0 to 21; and phase 2, d 22 to 42). In Exp. 1, β-mannanase increased the mean standardized ileal digestibility (SID) of AA in all feed ingredients. The amount of digestible energy was increased ( < 0.05) in β-mannanase-treated PKM. Pigs fed β-mannanase showed a greater ( < 0.05) digestibility of gross energy (GE). The feed-to-gain (F:G) ratio was improved ( < 0.01) in pigs fed high-nutrient diets. Pigs fed β-mannanase in the diets had greater ( < 0.05) average daily gain and F:G. In phase 2, the concentration of fecal ammonia was decreased ( < 0.05) in pigs fed β-mannanase. Considering the 2 experiments, it can be concluded that β-mannanase increases the SID of AA, which has to be considered in balancing the rations.
本研究旨在测试日粮中添加β-甘露聚糖酶是否会影响玉米、小麦、豆粕、玉米酒糟及其可溶物和棕榈仁粕(PKM)的氨基酸(AA)消化率、代谢能(ME)含量、养分消化率以及猪的生长性能。在试验1中,选用22头安装了瘘管的猪,采用不完全拉丁方设计,在6个阶段进行10种日粮处理,包括5种饲料原料和2种β-甘露聚糖酶浓度(0和0.5 g/kg日粮),以测定AA和能量消化率。在试验2中,200头生长猪被随机分配到4种处理中,采用2×2析因设计,有2个营养水平(高和低)和2种β-甘露聚糖酶浓度,分两个阶段(第1阶段,0至21天;第2阶段,22至42天)。在试验1中,β-甘露聚糖酶提高了所有饲料原料中AA的平均标准回肠消化率(SID)。经β-甘露聚糖酶处理的PKM中可消化能量增加(P<0.05)。饲喂β-甘露聚糖酶的猪总能量(GE)消化率更高(P<0.05)。饲喂高营养日粮的猪的料重比(F:G)得到改善(P<0.01)。日粮中添加β-甘露聚糖酶的猪平均日增重和F:G更高(P<0.05)。在第2阶段,饲喂β-甘露聚糖酶的猪粪便氨浓度降低(P<0.05)。综合两个试验可以得出结论,β-甘露聚糖酶提高了AA的SID,在日粮配方平衡时必须考虑这一点。