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Locked Nucleic Acid and Flow Cytometry-Fluorescence In Situ Hybridization for the Detection of Bacterial Small Noncoding RNAs

机译:锁定核酸和流式细胞术-荧光原位杂交技术检测细菌性小非编码RNA

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摘要

We describe the development and testing of a high-throughput method that enables the detection of small noncoding RNAs (ncRNAs) from single bacterial cells using locked nucleic acid probes (LNA) and flow cytometry-fluorescence in situ hybridization (flow-FISH). The LNA flow-FISH method and quantitative reverse transcription-PCR (qRT-PCR) were used to monitor the expression of three ncRNAs (6S, CsrB, and TPP-2) in Vibrio campbellii ATCC BAA-1116 cultures during lag phase, mid-log phase, and stationary phase. Both LNA flow-FISH and qRT-PCR revealed that CsrB and TPP-2 were highly expressed during lag phase but markedly reduced in mid-log phase and stationary phase, whereas 6S demonstrated no to little expression during lag phase but increased thereafter. Importantly, while LNA flow-FISH and qRT-PCR demonstrated similar overall expression trends, only LNA flow-FISH, which enabled the detection of ncRNAs in individual cells as opposed to the lysate-based ensemble measurements generated by qRT-PCR, was able to capture the cell-to-cell heterogeneity in ncRNA expression. As such, this study demonstrates a new method that simultaneously enables the in situ detection of ncRNAs and the determination of gene expression heterogeneity within an isogenic bacterial population.
机译:我们描述了一种高通量方法的开发和测试,该方法能够使用锁定的核酸探针(LNA)和流式细胞仪荧光原位杂交(flow-FISH)从单个细菌细胞中检测小的非编码RNA(ncRNA)。 LNA流式FISH方法和定量逆转录PCR(qRT-PCR)用于监测坎贝氏弧菌ATCC BAA-1116培养中三个ncRNA(6S,CsrB和TPP-2)在迟滞期,中期和中期的表达。对数阶段和固定阶段。 LNA流式FISH和qRT-PCR均显示CsrB和TPP-2在滞后阶段高表达,而在对数中期和静止期显着降低,而6S在滞后阶段几乎没有表达,但随后升高。重要的是,尽管LNA flow-FISH和qRT-PCR表现出相似的总体表达趋势,但只有LNA flow-FISH能够检测单个细胞中的ncRNA,而与qRT-PCR生成的基于裂解物的集合测量结果相反。捕获ncRNA表达中的细胞间异质性。这样,这项研究证明了一种新方法,该方法可以同时进行ncRNA的原位检测和确定同基因细菌种群内基因表达异质性。

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