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128 Effects of a Bacillus-based probiotic and prebiotics on nursery pig performance fecal consistency and fecal microflora

机译:芽孢杆菌的益生菌和益生元对幼儿园性能粪便稠度和粪便微生物的影响128

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摘要

This study evaluated the progeny of sows fed a control or probiotic diet with Bacillus subtilis C-3102 (Calsporin®, Calpis Co. Ltd., Tokyo, Japan) at 500,000 and 1,000,000 CFU/g diet in gestation and lactation, respectively. A total of 358 weaned pigs (DNA 241 × 600) were used in a 42-d trial with 4–5 pigs/pen and 18–19 pens/treatment. Pens were allotted to treatments in a completely randomized design based on BW at weaning. Treatments were a 2×2 factorial with main effects of sow diet (control vs. probiotic) and nursery diet (control vs. probiotic). In the nursery probiotic diet, a product based on probiotic Bacillus subtilis C-3102 at 500,000 CFU/g diet and prebiotics β-glucans and mannan oligosaccharides was included at 0.05% (BacPack ABF™, Quality Technology International, Inc., Elgin, IL). Diets were corn-soybean meal-based. Growth performance and fecal consistency on a 1-to-5 scale were evaluated weekly. Fecal samples were collected for microbial analysis by culture method and bacterial quantification of Bacillus subtilis C-3102, total Bacillus sp., Lactobacillus sp., Clostridium perfringens, Salmonella spp., Enterococcus sp., Enterobacteriaceae, total aerobes, and total anaerobes. Data were analyzed using a linear mixed model (PROC GLIMMIX, SAS®) with pen as experimental unit. There was no evidence for effect of sow diet, nursery diet, or interactions (P > 0.10) on overall nursery growth performance and fecal consistency. However, growth performance from d 21 to 42 and final BW were greater (P < 0.05) in progeny of control-fed sows compared to probiotic-fed sows. Microbial analysis revealed an increase (P < 0.01) in Bacillus subtilis C-3102 and, consequently, total Bacillus sp. in fecal microflora of probiotic-fed pigs. In conclusion, probiotic inclusion to sow diets lowered growth performance of the progeny in late nursery. The probiotic diet provided to sows or nursery pigs did not influence fecal consistency, but altered the fecal microbial population in nursery pigs by increasing total Bacillus sp.
机译:该研究评估了母猪的后代,分别在妊娠和哺乳期的50,000和1,000,000 CFU / G饮食中,患有芽孢杆菌C-3102(Calsporin®,Calpis)C-3102(Calsporin®,Calpis Co.Lt),分别在妊娠和哺乳期的饮食中喂养对照或益生菌饮食。使用4-5猪/笔和18-19猪/处理的42-D试验中使用358只断奶猪(DNA 241×600)。根据断奶的BW,分配了在完全随机设计中处理的钢笔。治疗是一种2×2因子,主要疗效播种饮食(对照与益生菌)和幼儿园(对照与益生菌)。在苗圃益生菌饮食中,基于益生菌芽孢杆菌C-3102的产物为500,000 cfu / g饮食和益生元β-葡聚糖和甘露糖果糖,如0.05%(Bacpack Abf™,质量科技International,Inc.,Elgin,IL )。饮食是玉米豆粕。每周评估1到5个规模的增长性能和粪便一致性。通过培养方法和枯草芽孢杆菌C-3102的细菌定量收集粪便样品,总芽孢杆菌SP。,Lactobacillus Sp。,perfringens,salmonella spp,salmoccus spp。,肠杆菌,肠杆菌,总产细胞和总Anaerobes。使用用笔作为实验单元使用线性混合模型(Proc Glimmix,SAS®)进行分析数据。没有证据表明母猪饮食,苗圃或相互作用(p> 0.10)对整体苗圃的生长性能和粪便一致性。然而,与益生菌喂养母猪相比,对照喂母猪的后代,D 21至42和最终BW的生长性能更大(P <0.05)。微生物分析显示枯草芽孢杆菌C-3102中的增加(p <0.01),因此,总芽孢杆菌sp。在益生菌喂养猪的粪便微生物中。总之,益生菌包涵体播种饮食降低了晚期苗圃的生长性能。提供给母猪或幼儿园猪的益生菌饮食并未影响粪便一致性,而是通过增加总芽孢杆菌SP来改变幼儿园猪中的粪便微生物群。

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