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Comparison of Quantitative PCR and Droplet Digital PCR Multiplex Assays for Two Genera of Bloom-Forming Cyanobacteria Cylindrospermopsis and Microcystis

机译:两种形成绽放的蓝细菌圆柱精子和微囊藻的定量PCR和液滴数字PCR多重分析的比较

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摘要

The increasing occurrence of harmful cyanobacterial blooms, often linked to deteriorated water quality and adverse public health effects, has become a worldwide concern in recent decades. The use of molecular techniques such as real-time quantitative PCR (qPCR) has become increasingly popular in the detection and monitoring of harmful cyanobacterial species. Multiplex qPCR assays that quantify several toxigenic cyanobacterial species have been established previously; however, there is no molecular assay that detects several bloom-forming species simultaneously. Microcystis and Cylindrospermopsis are the two most commonly found genera and are known to be able to produce microcystin and cylindrospermopsin hepatotoxins. In this study, we designed primers and probes which enable quantification of these genera based on the RNA polymerase C1 gene for Cylindrospermopsis species and the c-phycocyanin beta subunit-like gene for Microcystis species. Duplex assays were developed for two molecular techniques—qPCR and droplet digital PCR (ddPCR). After optimization, both qPCR and ddPCR assays have high linearity and quantitative correlations for standards. Comparisons of the two techniques showed that qPCR has higher sensitivity, a wider linear dynamic range, and shorter analysis time and that it was more cost-effective, making it a suitable method for initial screening. However, the ddPCR approach has lower variability and was able to handle the PCR inhibition and competitive effects found in duplex assays, thus providing more precise and accurate analysis for bloom samples.
机译:在最近几十年中,有害的蓝藻水华的发生越来越频繁,通常与水质恶化和不利的公共健康影响有关。实时定量PCR(qPCR)等分子技术的使用在有害蓝藻种类的检测和监控中越来越受欢迎。先前已经建立了量化几种产毒蓝细菌物种的多重qPCR分析方法;但是,没有分子检测可以同时检测到几种形成花白的物种。微囊藻和环精子藻是两个最常见的属,已知能够产生微囊藻毒素和环精子藻肝毒素。在这项研究中,我们设计了引物和探针,这些引物和探针能够基于圆柱精子物种的RNA聚合酶C1基因和微囊藻物种的c-藻蓝蛋白β亚基样基因进行定量。针对两种分子技术(qPCR和液滴数字PCR(ddPCR))开发了双链检测。经过优化后,qPCR和ddPCR分析均具有较高的线性和定量相关性。两种技术的比较表明,qPCR具有更高的灵敏度,更宽的线性动态范围和更短的分析时间,并且更具成本效益,使其成为进行初始筛选的合适方法。但是,ddPCR方法具有较低的可变性,并且能够处理双链测定中发现的PCR抑制作用和竞争效应,因此可为水华样品提供更精确的分析。

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