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Capillary electrophoresis ribosomal RNA single-stranded conformation polymorphism: a new approach for characterization of low-diversity microbial communities

机译:毛细管电泳核糖体RNA单链构象多态性:表征低多样性微生物群落的新方法

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摘要

Capillary electrophoresis (CE) has been the principle system for nucleic acid analysis since the early 1990s due to its inherent advantages such as fast analysis time, high resolution and efficiency, minimal sample requirement, high detection sensitivity, and automation. In the past few decades, microbial community fingerprinting methods such as terminal restriction fragment length polymorphism and single-stranded conformation polymorphism (SSCP) have migrated to CE to utilize its advantages over conventional slab gel electrophoresis. Recently, a gel-based direct rRNA fingerprint method was demonstrated. Different from other existing microbial community characterization approaches, this novel approach is polymerase chain reaction free and capable of providing information on the relative abundance of rRNA from individual phylotypes in low-diversity samples. As a gel-based method, it has a long analysis time and relatively large reagent and sample requirements. Here, we addressed these limitations by transferring the RNA fingerprint approach to the CE platform. Analysis time significantly improved from 24 h to 60 min, and the use of a fluorescently labeled hybridization probe as the detection strategy decreased the sample requirement by ten-fold. The combination of fast analysis time, low sample requirement, and sensitive fluorescence detection makes CE-RNA-SSCP an appealing new approach for characterizing low-diversity microbial communities.
机译:自1990年代初以来,毛细管电泳(CE)一直是核酸分析的主要系统,因为其固有的优势,例如分析时间快,分离度高,效率高,样品需求量少,检测灵敏度高以及自动化程度高。在过去的几十年中,微生物群落指纹图谱方法(如末端限制性片段长度多态性和单链构象多态性(SSCP))已迁移到CE,以利用其相对于常规平板凝胶电泳的优势。最近,证明了一种基于凝胶的直接rRNA指纹方法。与其他现有的微生物群落表征方法不同,这种新颖的方法不含聚合酶链反应,能够提供低多样性样品中各个系统型的rRNA相对丰度的信息。作为基于凝胶的方法,它具有较长的分析时间以及相对较大的试剂和样品要求。在这里,我们通过将RNA指纹方法转移到CE平台来解决这些限制。分析时间从24小时显着缩短到60分钟,并且使用荧光标记的杂交探针作为检测策略,使样品需求减少了十倍。快速分析时间,低样品需求和灵敏的荧光检测相结合,使CE-RNA-SSCP成为表征低多样性微生物群落的一种有吸引力的新方法。

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