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[从不同健康动物分离出的优势需氧菌与不同大豆苷元生物转化菌共培养对大豆苷元生物转化能力的影响]

[Influence of predominant aerobic bacteria isolated from different healthy animals on daidzein biotransforming capacity by co-culture with different daidzein biotransforming bacteria].

作者信息

Luo Jinglong, Wang Xiuling, Fan Jinru, Wang Shiying, Li Jia

机构信息

College of Life Sciences, Agricultural University of Hebei, Baoding 071001, China.

出版信息

Wei Sheng Wu Xue Bao. 2011 Aug;51(8):1042-51.

Abstract

OBJECTIVE

To investigate the influence of isolated predominant aerobic bacteria on daidzein biotransformation capacity by co-culture with daidzein biotransforming bacteria.

METHODS

Predominant aerobic bacteria were isolated from diluted feces solutions of different healthy animals, including ICR mice, Luhua chicken, Landrace pigs and Rex rabbits. Daidzein biotransforming bacteria were anaerobically co-cultured with the isolated predominant aerobic bacteria and the cultural broth was extracted and detected by high performance liquid chromatography (HPLC).

RESULTS

Twenty two predominant aerobic bacteria were isolated from the four different healthy animals mentioned above. Based on the analyses of 16S rRNA gene sequences, morphology study and relative biophysico-biochemical characteristics, all 22 isolates belong to the 5 genera, i. e. Escherichia (10) , Proteus (5) , Enterococcus (4), Bacillus (2) and Pseudomonas (1). Co-culture between predominant aerobic bacteria and daidzein biotransforming bacteria was carried out under anaerobic conditions. The results showed that the biotransformation capacity was totally lost when different daidzein biotransforming bacterium was co-cultured with either Bacillus cereus ( R1 ) or Pseudomonas aerginosa (R5) and continuously inoculated for 2 or 3 passages. However, no obvious influence was observed when daidzein biotransforming bacteria were co-cultured with all the other isolated predominant aerobic bacteria except R1 and R5. In addition, when strain R1 and R5 was co-cultured with the intestinal microflora of the ICR mice anaerobically and continuously inoculated for 5 passages, about 90% of the co-cultures totally lost the activity to convert daidzein to equol effectively.

CONCLUSION

Different predominant aerobic bacteria showed different influence on daidzein biotransformation capacity after being co-cultured with different daidzein biotransforming bacteria. Among all the isolated predominant aerobic bacteria used for co-culture, both Bacillus cereus ( R1) and Pseudomonas aerginosa (R5) were detected significant inhibition on biotransformation activity of different daidzein biotransforming bacteria.

摘要

目的

通过与大豆苷元生物转化菌共培养,研究分离出的优势需氧菌对大豆苷元生物转化能力的影响。

方法

从不同健康动物(包括ICR小鼠、芦花鸡、长白猪和 Rex 兔)的稀释粪便溶液中分离优势需氧菌。将大豆苷元生物转化菌与分离出的优势需氧菌进行厌氧共培养,对培养液进行提取并用高效液相色谱(HPLC)检测。

结果

从上述四种不同健康动物中分离出22株优势需氧菌。基于16S rRNA基因序列分析、形态学研究及相关生物物理生化特性,所有22株分离菌属于5个属,即大肠杆菌属(10株)、变形杆菌属(5株)、肠球菌属(4株)、芽孢杆菌属(2株)和假单胞菌属(1株)。优势需氧菌与大豆苷元生物转化菌在厌氧条件下进行共培养。结果显示,当不同的大豆苷元生物转化菌与蜡样芽孢杆菌(R1)或铜绿假单胞菌(R5)共培养并连续传代2或3次时,生物转化能力完全丧失。然而,当大豆苷元生物转化菌与除R1和R5之外的所有其他分离出的优势需氧菌共培养时,未观察到明显影响。此外,当菌株R1和R5与ICR小鼠的肠道微生物群进行厌氧共培养并连续传代5次时,约90%的共培养物完全丧失了将大豆苷元有效转化为雌马酚的活性。

结论

不同的优势需氧菌与不同的大豆苷元生物转化菌共培养后,对大豆苷元生物转化能力表现出不同的影响。在所有用于共培养的分离出的优势需氧菌中,蜡样芽孢杆菌(R1)和铜绿假单胞菌(R5)均对不同大豆苷元生物转化菌的生物转化活性有显著抑制作用。

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