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从喂食酪蛋白-牛脂或蛋黄饮食的ddY小鼠中检测和分离典型肠道原生细菌。

Detection and isolation of the typical gut indigenous bacteria from ddY mice fed a casein-beef tallow-based or egg yolk-based diet.

作者信息

Fukunaga Mayu, Kuda Takashi, Xia Yumeng, Nakamura Saori, Takahashi Hajime, Kimura Bon

机构信息

Department of Food Science and Technology, Tokyo University of Marine Science and Technology, Tokyo, Japan.

出版信息

J Food Biochem. 2020 Jul;44(7):e13246. doi: 10.1111/jfbc.13246. Epub 2020 May 27.

Abstract

The effects of whole egg on the cecal microbiome of ddY mice has been reported. To investigate the existence of susceptible indigenous bacteria (SIB) to egg yolks (EY), mice were fed a diet containing either 20% (w/w) milk casein and 17% beef tallow (CT) or 12% milk casein and 27% EY for 14 days, and then, the cecal microbiome was analyzed by 16S rRNA (V4) amplicon sequencing. To isolate the typical species in each diet group, culture-dependent viable bacterial counts were determined on Blood Liver (BL) and Gifu Anaerobic Medium (GAM) agar plates. The amplicon sequencing analysis revealed typical CT-SIB, such as Lachnospiraceae-like bacteria, and EY-SIB, such as Allobaculum-, Lactobacillus murinus-, and Bacteroides vulgatus-like bacteria. Two of the detected SIB species, L. murinus- and B. vulgatus-like bacteria, were successfully isolated from the BL and GAM agar plates and defined using a 16S rDNA BLAST search. PRACTICAL APPLICATIONS: The SIB defined in the CT and EY groups might have some effects on the nutritional and functional chemical compounds in the milk casein, beef tallow, and/or EY. Analysis of its functional properties of the isolates might develop the new and unique probiotic strains.

摘要

已有报道全蛋对ddY小鼠盲肠微生物群的影响。为了研究对蛋黄(EY)敏感的本土细菌(SIB)的存在情况,将小鼠分为两组,分别喂食含20%(w/w)乳清蛋白和17%牛脂(CT)的饲料或含12%乳清蛋白和27%EY的饲料,持续14天,然后通过16S rRNA(V4)扩增子测序分析盲肠微生物群。为了分离每个饮食组中的典型菌种,在血肝(BL)和岐阜厌氧培养基(GAM)琼脂平板上测定依赖培养的活菌数。扩增子测序分析揭示了典型的CT-SIB,如类毛螺菌科细菌,以及EY-SIB,如类别丁酸杆菌属、鼠李糖乳杆菌和普通拟杆菌属细菌。从BL和GAM琼脂平板上成功分离出两种检测到的SIB菌种,即类鼠李糖乳杆菌和类普通拟杆菌,并通过16S rDNA BLAST搜索进行了鉴定。实际应用:CT组和EY组中定义的SIB可能对乳清蛋白、牛脂和/或EY中的营养和功能性化合物有一定影响。对分离株功能特性的分析可能会开发出新的独特益生菌菌株。

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