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Combination of Competitive Quantitative PCR and Constant-Denaturant Capillary Electrophoresis for High-Resolution Detection and Enumeration of Microbial Cells

机译:竞争性定量PCR与恒定变性毛细管电泳相结合可实现微生物细胞的高分辨率检测和计数

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摘要

A novel quantitative PCR (QPCR) approach, which combines competitive PCR with constant-denaturant capillary electrophoresis (CDCE), was adapted for enumerating microbial cells in environmental samples using the marine nanoflagellate Cafeteria roenbergensis as a model organism. Competitive PCR has been used successfully for quantification of DNA in environmental samples. However, this technique is labor intensive, and its accuracy is dependent on an internal competitor, which must possess the same amplification efficiency as the target yet can be easily discriminated from the target DNA. The use of CDCE circumvented these problems, as its high resolution permitted the use of an internal competitor which differed from the target DNA fragment by a single base and thus ensured that both sequences could be amplified with equal efficiency. The sensitivity of CDCE also enabled specific and precise detection of sequences over a broad range of concentrations. The combined competitive QPCR and CDCE approach accurately enumerated C. roenbergensis cells in eutrophic, coastal seawater at abundances ranging from approximately 10 to 104 cells ml−1. The QPCR cell estimates were confirmed by fluorescent in situ hybridization counts, but estimates of samples with <50 cells ml−1 by QPCR were less variable. This novel approach extends the usefulness of competitive QPCR by demonstrating its ability to reliably enumerate microorganisms at a range of environmentally relevant cell concentrations in complex aquatic samples.
机译:一种新颖的定量PCR(QPCR)方法,将竞争性PCR与恒定变性毛细管电泳(CDCE)相结合,适用于枚举海洋纳米鞭毛Cafeteria roenbergensis为模型生物的环境样品中的微生物细胞。竞争性PCR已成功用于定量环境样品中的DNA。然而,该技术是劳动密集型的,并且其准确性取决于内部竞争者,该内部竞争者必须具有与靶标相同的扩增效率,但是可以容易地与靶标DNA区分开。 CDCE的使用避免了这些问题,因为它的高分辨率允许使用内部竞争物,该竞争物与靶DNA片段的碱基相差一个碱基,因此可以确保两个序列均可以相同的效率扩增。 CDCE的灵敏度还使得能够在广泛的浓度范围内进行特异性和精确的序列检测。结合竞争QPCR和CDCE方法可以精确计数富营养沿海海水中的罗氏梭菌细胞,其丰度约为10到10 4 细胞ml -1 。通过荧光原位杂交计数证实了QPCR细胞的估计,但是通过QPCR对<50细胞ml -1 的样品的估计变化较小。这种新颖的方法通过证明其能够可靠地枚举复杂水生样品中一系列与环境有关的细胞浓度下的微生物的能力,扩展了竞争性QPCR的用途。

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