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益生菌干预对妊娠母猪微生物群多样性的影响及其对早期肠道定植的促进作用

Promotion of Early Gut Colonization by Probiotic Intervention on Microbiota Diversity in Pregnant Sows.

作者信息

Veljović Katarina, Dinić Miroslav, Lukić Jovanka, Mihajlović Sanja, Tolinački Maja, Živković Milica, Begović Jelena, Mrvaljević Igor, Golić Nataša, Terzić-Vidojević Amarela

机构信息

Laboratory for Molecular Microbiology, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, Serbia.

Centre for Development and Production, Veterinary Station "Koker", Adaševci, Serbia.

出版信息

Front Microbiol. 2017 Oct 20;8:2028. doi: 10.3389/fmicb.2017.02028. eCollection 2017.

Abstract

The aim of this work was to design a novel mixed probiotic culture for piglets and to evaluate its beneficial effect on the piglets' gut health. The possible mechanisms of probiotic activity, such as adhesion, competitive pathogen exclusion and influence on gut microbiota diversity were determined. Mixed probiotic starter culture is composed of three thermophilic lactic acid bacteria (LAB) strains: BGRA43, BGHI14 and BGVLJ1-44. The strains BGVLJ1-44 and BGRA43 showed good technological properties (fast milk curdling, strong proteolytic activity). In addition, the strain BGVLJ1-44 produces exopolysaccharide (EPS), BGHI14 is heterofermentative LAB strain with significant immunomodulatory effect, while the strain BGRA43 showed strong antimicrobial activity against different pathogens and exhibited significantly higher level of adhesion to Caco-2 cells comparing to other two strains. Both lactobacilli strains BGRA43 and BGHI14 ( < 0.05), as well as probiotic combination ( < 0.01) significantly reduced the adhesion of ATCC25922 to Caco-2 cells, while the strains BGVLJ1-44 ( < 0.01) and BGRA43 ( < 0.05) significantly reduced adhesion of 654/7E (veterinary isolate). The results of farm trial revealed that treatment of sows with new fermented dairy probiotic influenced the piglets' gut colonization with beneficial bacteria and reduced the number of enterobacteriaceae in litters from some treated sows (no significant due to high variability among animals). Finally, this is the first study reporting that the treatment of sows with probiotic combination resulted in the improved microbiota diversity in neonatal piglets.

摘要

这项工作的目的是为仔猪设计一种新型混合益生菌培养物,并评估其对仔猪肠道健康的有益作用。确定了益生菌活性的可能机制,如黏附、竞争性病原菌排除以及对肠道微生物群多样性的影响。混合益生菌发酵剂培养物由三种嗜热乳酸菌(LAB)菌株组成:BGRA43、BGHI14和BGVLJ1-44。BGVLJ1-44和BGRA43菌株表现出良好的工艺特性(快速凝乳、强大的蛋白水解活性)。此外,BGVLJ1-44菌株产生胞外多糖(EPS),BGHI14是具有显著免疫调节作用的异型发酵乳酸菌菌株,而BGRA43菌株对不同病原体表现出强大的抗菌活性,并且与其他两种菌株相比,对Caco-2细胞的黏附水平显著更高。乳酸菌菌株BGRA43和BGHI14(<0.05)以及益生菌组合(<0.01)均显著降低了ATCC25922对Caco-2细胞的黏附,而BGVLJ1-44菌株(<0.01)和BGRA43菌株(<0.05)显著降低了654/7E(兽医分离株)的黏附。农场试验结果表明,用新的发酵乳制品益生菌处理母猪会影响仔猪肠道有益菌的定殖,并减少了一些处理过的母猪窝中肠杆菌科的数量(由于动物个体差异较大,无显著差异)。最后,这是第一项报道用益生菌组合处理母猪可改善新生仔猪微生物群多样性的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f20/5654949/50c1897a4f5a/fmicb-08-02028-g001.jpg

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