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首页> 外文期刊>Applied and Environmental Microbiology >Molecular identification of bacteria from a coculture by denaturing gradient gel electrophoresis of 16S ribosomal DNA fragments as a tool for isolation in pure cultures.
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Molecular identification of bacteria from a coculture by denaturing gradient gel electrophoresis of 16S ribosomal DNA fragments as a tool for isolation in pure cultures.

机译:通过变性16S核糖体DNA片段的梯度凝胶电泳,从共培养物中分子鉴定细菌,作为在纯培养物中分离的工具。

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Molecular information about the bacterial composition of a coculture capable of sulfate reduction after exposure to oxic and microoxic conditions was used to identify and subsequently to isolate the components of the mixture in pure culture. PCR amplification of 16S ribosomal DNA fragments from the coculture, analyzed by denaturing gradient gel electrophoresis, resulted in two distinct 16S ribosomal DNA bands, indicating two different bacterial components. Sequencing showed that the bands were derived from a Desulfovibrio strain and an Arcobacter strain. Since the phylogenetic positions of bacteria are often consistent with their physiological properties and culture requirements, molecular identification of the two components of this coculture allowed the design of specific culture conditions to separate and isolate both strains in pure culture. This approach facilitates the combined molecular and physiological analysis of mixed cultures and microbial communities.
机译:在暴露于有氧和微氧条件后,有关能够在硫酸盐下还原的共培养物细菌组成的分子信息被用于鉴定并随后分离出纯培养物中混合物的成分。通过变性梯度凝胶电泳分析共培养物中的16S核糖体DNA片段的PCR扩增,产生两个不同的16S核糖体DNA带,表明两个不同的细菌成分。测序表明,这些条带来自Desulfovibrio菌株和Arcobacter菌株。由于细菌的系统发育位置通常与其生理特性和培养要求相一致,因此对这种共培养的两种成分进行分子鉴定可以设计特定的培养条件,以分离和分离纯培养中的两种菌株。这种方法有助于对混合培养物和微生物群落进行分子和生理学结合分析。

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