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首页> 外文期刊>Canadian journal of microbiology >DNA extraction procedure affects organic-aggregate-attached bacterial community profiles from a shallow eutrophic lake.
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DNA extraction procedure affects organic-aggregate-attached bacterial community profiles from a shallow eutrophic lake.

机译:DNA提取程序影响浅水富营养化湖泊中与有机聚集体相连的细菌群落特征。

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摘要

Organic aggregates (OA) in aquatic ecosystems harbour diverse microbial communities. The colonization and growth of OA-attached bacteria are important processes in the degradation and transformation of the particles. The development of efficient and comparative DNA extraction methods is one of the most critical steps in the study of the composition and diversity of OA-attached bacterial communities. To evaluate whether different DNA extraction procedures affect the measurement of bacterial community composition, we compared four in situ lysis procedures using OA from three locations in a shallow eutrophic lake (Lake Taihu, China). The extracted DNA was analyzed using denaturing gradient gel electrophoresis profiles. We found that the choice of DNA extraction protocol had a significant influence on the fingerprints of the OA-attached bacterial community. This was shown not only in the number of bands but also in their relative representation of certain DNA bands. Using the bead-beating DNA extraction method in the presence of hexadecyltrimethylammonium bromide, we found that crude microbial DNA could be extracted efficiently from different OA types. This protocol is reproducible and gives very pure DNA of relatively high molecular mass. More importantly, the protocol provided more representative and informative data on the diversity of OA-attached bacterial communities.
机译:水生生态系统中的有机聚集体(OA)包含各种微生物群落。 OA附着细菌的定殖和生长是颗粒降解和转化的重要过程。开发高效且比较的DNA提取方法是研究与OA相连的细菌群落的组成和多样性的最关键步骤之一。为了评估不同的DNA提取程序是否会影响细菌群落组成的测量,我们比较了在浅水富营养化湖泊(中国太湖)中三个位置使用OA进行的四种原位裂解程序。使用变性梯度凝胶电泳图谱分析提取的DNA。我们发现,DNA提取方案的选择对与OA相连的细菌群落的指纹具有重要影响。这不仅显示在条带数量上,还显示在某些DNA条带的相对表示中。在十六烷基三甲基溴化铵的存在下,使用拍打DNA提取方法,我们发现可以从不同的OA类型中有效地提取粗微生物DNA。该方案是可重复的,并提供了相对较高分子量的非常纯净的DNA。更重要的是,该协议提供了更多与OA相连的细菌群落多样性的代表性和信息性数据。

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