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单一和复合益生菌对生长育肥猪及猪粪堆肥的影响。

Effects of single and complex probiotics in growing-finishing pigs and swine compost.

作者信息

Jeon Kyeongho, Song Minho, Lee Jihwan, Oh Hanjin, Song Dongcheol, Chang Seyeon, An Jaewoo, Cho Hyunah, Park Sehyun, Kim Hyeunbum, Cho Jinho

机构信息

Department of Animal Science, Chungbuk National University, Cheongju 28644, Korea.

Department of Animal Science and Biotechnology, Chungnam National University, Daejeon 34134, Korea.

出版信息

J Anim Sci Technol. 2024 Jul;66(4):763-780. doi: 10.5187/jast.2024.e88. Epub 2024 Jul 31.

Abstract

This study was conducted to supplement single and complex probiotics to investigate the effect on growing-finishing pigs and compost. In experiment 1, the 64 crossbred ([Landrace × Yorkshire] × Duroc) pigs with an initial body weight of 18.75 ± 0.33 kg and a birth of 63 days were assigned to a completely randomized four treatment groups based on the initial body weight (4 pigs in a pen with 4 replicate pens for each treatment). For 13 weeks, the dietary treatments were provided: 1) Control (CON; basal diet), 2) T1 (CON + 0.2% ), 3) T2 (CON + 0.2% ), 4) T3 (CON + 0.2% + 0.2% ). In experiment 2, the pig manure was obtained from Chungbuk National University (Cheongju, Korea) swine farm. For 12 weeks, the supplementary treatments were provided: 1) CON, non-additive compost; 2) T1, spray 10 g per 3.306 m; 3) T2, spray 40 g per 3.306 m; 4) T3, spray 10 g per 3.306 m; 5) T4: spray 40 g per 3.306 m; 6) T5, spray 5 g + 5 g per 3.306 m; 7) T6, spray 20 g + 20 g per 3.306 m and there were 6 replicates each treatment. In experiment 1, During the overall experimental period, T3 showed significantly improved ( < 0.05) feed conversion ratio and average daily gain compared to other groups. In average maturity score, T3 showed significantly higher ( < 0.05) than other groups. Supplementing complex probiotics group improved ( < 0.05) H2S emissions and fecal microflora compared to the non-supplementing group. In experiment 2, additive probiotics groups had no effect ( > 0.05) on moisture content than the non-additive group at 9 and 12 weeks. T6 showed a significantly improved ( < 0.05) average maturity score at all periods and ammonia emissions at 1 week and 4 weeks compared to other groups. In summary, supplementation complex probiotics induced positive effects on both pigs and compost.

摘要

本研究旨在添加单一和复合益生菌,以研究其对生长育肥猪和堆肥的影响。在实验1中,选取64头初始体重为18.75±0.33千克、63日龄的杂交猪([长白猪×约克夏猪]×杜洛克猪),根据初始体重将其随机分为完全随机的四个处理组(每个处理组每栏4头猪,共4个重复栏)。在13周的时间里,提供以下日粮处理:1)对照组(CON;基础日粮),2)T1(CON + 0.2% ),3)T2(CON + 0.2% ),4)T3(CON + 0.2% + 0.2% )。在实验2中,猪粪取自忠北国立大学(韩国清州)养猪场。在12周的时间里,提供以下补充处理:1)CON,无添加剂堆肥;2)T1,每3.306平方米喷洒10克;3)T2,每3.306平方米喷洒40克;4)T3,每3.306平方米喷洒10克;5)T4:每3.306平方米喷洒40克;6)T5,每3.306平方米喷洒5克 + 5克;7)T6,每3.306平方米喷洒20克 + 20克,每个处理有6个重复。在实验1中,在整个实验期间,与其他组相比,T3的饲料转化率和平均日增重显著提高(P<0.05)。在平均成熟度评分方面,T3显著高于其他组(P<0.05)。与未添加组相比,添加复合益生菌组的硫化氢排放量和粪便微生物群得到改善(P<0.05)。在实验2中,在第9周和第12周时,添加益生菌组对水分含量的影响与未添加组相比无显著差异(P>0.05)。与其他组相比,T6在所有时期的平均成熟度评分均显著提高(P<0.05),在第1周和第4周时氨气排放量也显著降低。总之,添加复合益生菌对猪和堆肥均产生了积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60c5/11331375/c8e48c9ec76b/jast-66-4-763-g1.jpg

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