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首页> 外文期刊>Archives of microbiology >Distinct patterns of microbial metabolic fingerprints in sows and their offspring: a pilot study
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Distinct patterns of microbial metabolic fingerprints in sows and their offspring: a pilot study

机译:母猪中微生物代谢指纹的明显模式及其后代:试点研究

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摘要

Microbial metabolism and growth in the intestinal tract depend on the composition of substrates present in the digesta and their ability to be metabolised by the microorganisms. The aim of this pilot study was to characterise potential hindgut microbial activity during perinatal period in sows and their offspring. Rectal samples from three sows (1-3 weeks before and after birth) and three of their piglets (1-5 weeks after birth), were subjected to assays using BIOLOG GEN III microplates to produce metabolic fingerprints for each animal. The number of metabolised substrates of the sow hindgut microbiota was stable during the pregnancy and lactation periods, as assessed by the richness index. In piglets, the richness was stable during the suckling period and at beginning of weaning, however, it decreased when the piglets were 5 weeks old (P <= 0.05). Analysis of associations between the sows and the piglets and the microbial metabolic potential showed that microbial metabolism was strongly associated with the catabolism of carbohydrates especially in sows. Only 5-week-old weaned piglets clustered together with the sows regarding the microbial catabolism of substrates, but not suckling piglets. The association analyses clustered all the piglets in two groups distinctive for litter. The analysis of metabolic fingerprints via microbial growth with different substrates can be useful to positively influence microbial community function such as selectively enhancing desirable active microbial populations to benefit health of the gut and the animal.
机译:微生物代谢和肠道的生长取决于Digesta中存在的底物的组成及其由微生物代谢的能力。该试点研究的目的是在母猪及其后代在围产期期间表征潜在的后肠微生物活动。从三头母猪(出生前后1-3周)和三个仔猪(出生后1-5周)的直肠样品进行了使用Biolog Gen III微孔板进行测定以产生每种动物的代谢指纹。如富人指数评估,在妊娠和泌乳期间,母猪后肠微生物酵母的代谢底物的数量稳定,如同富人指数评估。在仔猪中,在乳酸期并且在断奶开始时,富含性稳定,然而,当仔猪为5周龄时减少(P <= 0.05)。母猪与仔猪之间的关联分析以及微生物代谢潜力表明,微生物代谢与诸如母猪中的碳水化合物的分解代谢强烈相关。只有5周的被断奶仔猪与母猪聚集在一起,母猪与基材的微生物分解代谢,但不吮吸仔猪。该关联分析聚集在两个群体中的所有仔猪占垃圾。通过微生物生长与不同底物的微生物生长分析可用于积极影响微生物群落功能,例如选择性地增强所需的活性微生物群以使肠道和动物的健康受益。

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