首页> 美国卫生研究院文献>Frontiers in Veterinary Science >Effects of Dietary Supplementation With Enterococcus faecium and Clostridium butyricum Either Alone or in Combination on Growth and Fecal Microbiota Composition of Post-weaning Pigs at a Commercial Farm
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Effects of Dietary Supplementation With Enterococcus faecium and Clostridium butyricum Either Alone or in Combination on Growth and Fecal Microbiota Composition of Post-weaning Pigs at a Commercial Farm

机译:日粮中补充粪便肠球菌和丁酸梭状芽孢杆菌对商业农场断奶仔猪生长和粪便微生物群组成的影响

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摘要

Lactic acid bacteria (LAB) and butyric acid bacteria (BAB) are commonly used as probiotics in swine production. However, their combined effect on post-weaning pigs has not been assessed. Therefore, here we investigated the individual and combined efficacy of dietary Enterococcus faecium and Clostridium butyricum on the growth and gut microbiota of post-weaning pigs at a commercial farm. Four independent trials were conducted, in each of which five pens containing 10 pigs were assigned to one of five treatments: C, basal diet; L, basal diet + live E. faecium; D, basal diet + heat-killed E. faecium; M, basal diet + C. butyricum; or L+M, basal diet + live E. faecium + C. butyricum. Each trial was conducted over a 90-day period that was divided into two phases (Phase 1, days 0–40 post-weaning; and Phase 2, days 40–90 post-weaning), with the probiotics being supplemented only during Phase 1. Ten pigs in each pen were used for body weight (BW) analysis and fecal samples were collected from five or six of these pigs. In addition, the fecal samples from one randomly selected trial were used for gut microbiota analysis. We found that pigs in the L, D, and L+M treatment groups had a significantly higher BW than those in C (p < 0.05) but pigs in the L+M treatment group had a similar BW to those in the L and M groups. Furthermore, there were no significant differences in alpha diversity among the treatments but the beta diversity (weighted UniFrac distances) showed distinct clustering patterns, with pigs in C having discrete microbiota from those in all of the probiotics treatment groups except D (C vs. L, q = 0.04; C vs. M, q = 0.06; C vs. L+M, q = 0.06). These findings indicate that dietary supplementation with live or heat-killed E. faecium enhances growth performance in pigs but there is no synergistic effect when E. faecium is used in combination with C. butyricum. Furthermore, the addition of live E. faecium and C. butyricum to the diet of pigs may change the structure of the gut microbiota.
机译:乳酸菌(LAB)和丁酸菌(BAB)通常用作猪生产中的益生菌。但是,尚未评估它们对断奶后猪的综合作用。因此,在这里,我们研究了商业农场的粪肠球菌和丁酸梭菌对断奶后仔猪生长和肠道菌群的个体和综合功效。进行了四项独立试验,其中每组五只钢笔(每头10只猪)被指定为五种处理方式之一:C,基础饮食; L,基础饮食+活的屎肠球菌; D,基础饮食+热杀死的屎肠球菌; M,基础饮食+酪丁酸;或L + M,基础饮食+活的屎肠球菌+丁酸梭菌。每个试验都在90天的时间内进行,分为两个阶段(第1阶段,断奶后0-40天;和第2阶段,断奶后40-90天),仅在第1阶段补充益生菌每只笔中的十只猪用于体重(BW)分析,并从其中五到六只猪收集粪便样品。另外,将来自一项随机选择的试验的粪便样品用于肠道菌群分析。我们发现,L,D和L + M处理组的猪的体重明显高于C(p <0.05),但L + M处理组的猪的体重与L和M的相似组。此外,各处理之间的α多样性没有显着差异,但β多样性(加权UniFrac距离)显示出不同的聚类模式,其中C中的猪与其他益生菌治疗组中的细菌相比具有离散的微生物群(C对L) ,q = 0.04; C vs. M,q = 0.06; C vs. L + M,q = 0.06)。这些发现表明,日粮中添加活的或热灭活的粪肠球菌可增强猪的生长性能,但是当粪肠球菌与丁酸梭菌结合使用时,没有协同作用。此外,在猪的饲料中添加活的粪肠球菌和丁酸梭菌可能会改变肠道菌群的结构。

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