首页> 外文期刊>The British Journal of Nutrition >Effects of peanut meal extracts fermented by Bacillus natto on the growth performance, learning and memory skills and gut microbiota modulation in mice
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Effects of peanut meal extracts fermented by Bacillus natto on the growth performance, learning and memory skills and gut microbiota modulation in mice

机译:Bacillus Natto发酵对小鼠生长性能,学习和记忆技巧和肠道微生物肠道调制的花生粉提取物的影响

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摘要

Recent studies have demonstrated that the nutritional properties of peanut meal (PM) can be improved after being fermented. The assessment of fermented PM has been reported to be limited to various physical and chemical evaluations in vitro. In the present study, PM was fermented by Bacillus natto to explore the effects of fermented PM extract (FE) on growth performance, learning and memory ability and intestinal microflora in mice. Ninety newly weaned male Kunming (KM) mice were randomly divided into seven groups: normal group (n 20), low-dose FE group (n 10), middle-dose FE group (MFE) (n 10), high-dose FE group (HFE) (n 20), unfermented extraction group (n 10), model group (10) and natural recovery group (10). Learning and memory skills were performed by the Morris water maze (MWM) test, and the variation in gut microbiota (GM) composition was assessed by 16S rDNA amplicon sequencing. The results show that HFE remarkably improved the growth performance in mice. In the MWM test, escape latency was shortened in both MFE and HFE groups, while the percentage of time, distance in target quadrant and the number crossing over the platform were significantly increased in the HFE group. Moreover, the FE played a preventive role in the dysbacteriosis of mice induced by antibiotic and increased the richness and species evenness of GM in mice.
机译:最近的研究表明,在发酵后可以改善花生粉(PM)的营养特性。据报道,发酵PM的评估限于体外各种物理和化学评价。在本研究中,PM由芽藻发酵,探讨发酵PM提取物(Fe)对小鼠生长性能,学习和记忆能力和肠道微生物的影响。九十来雄性昆明(KM)小鼠随机分为七组:正常组(N 20),低剂量Fe组(N 10),中剂量Fe组(MFE)(N 10),高剂量Fe组(HFE)(N 20),未发酵的提取组(N 10),模型组(10)和天然恢复组(10)。学习和记忆技能是由Morris水迷宫(MWM)试验进行的,并且通过16S RDNA扩增子测序评估肠道微生物群(GM)组合物的变化。结果表明,HFE显着提高了小鼠的生长性能。在MWM测试中,在MFE和HFE组中缩短了逃避延迟,而HFE组在目标象限中的百分比,目标象限距离和交叉的数量显着增加。此外,该FE在抗生素诱导的小鼠诱导的小鼠的缺陷中发挥了预防作用,并增加了小鼠克的丰富性和物种均匀性。

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