使用qPCR格式监测蓝藻华的蓝藻DNA参考物质的实验室间性能研究

Leonardo B. Pinheiro, Mark Van Asten, Luminita Antin, Hunter Adams, Judy Y. Qiu, Mary Robinson, Suzane DeLorenzo, Robert Holmes, Megan Hurd, Rueyjing Tang, Kale Clausen, Kristin Greenwood, Rahana Sudhi, Paul Wright, Konstanze Steiner, Anne Gérard, Somanath Bhat, Anna Baoutina, Kerry Emslie
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引用次数: 0

摘要

数字PCR (dPCR)已越来越多地被用作核酸标准物质表征的主要测量方法。当用于定量PCR (qPCR)的验证和校准时,核酸参考物质特别有用。在这项研究中,我们描述了蓝藻DNA参考物质(RM)的开发和使用dPCR表征。一项涉及14个实验室的国际实验室间研究使用蓝藻DNA RM结合冻干PCR试剂设计用于监测蓝藻华事件。在使用基于qpcr的技术获得的55个评分研究结果中,62%在基于dPCR测量的8%的相对扩展不确定性范围内,而100%的研究结果返回满意的z分数,使用相当于一个Ct值的一组性能变异系数计算。研究参与者的结果表明,蓝藻DNA RM适合用于监测有毒蓝藻华事件的qPCR格式的方法验证和质量控制。最重要的是,研究结果表明,使用标准化试剂结合高度表征的核酸RMs,基于qpcr的DNA定量技术可以达到与数字PCR技术相当的准确性和可重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interlaboratory Performance Study of Cyanobacteria DNA Reference Materials Using a qPCR Format for Monitoring Cyanobacterial Blooms

Digital PCR (dPCR) has increasingly been used as a primary measurement method for the characterization of nucleic acid reference materials. Nucleic acid reference materials are particularly useful when used for the validation and calibration of quantitative PCR (qPCR). In this study, we describe the development and characterization of Cyanobacteria DNA reference materials (RM) using dPCR. An international interlaboratory study involving 14 laboratories was conducted using the Cyanobacteria DNA RM in combination with a lyophilized PCR reagent designed for the monitoring of Cyanobacteria bloom events. Of the 55 scored study results obtained using qPCR-based techniques, 62% were within the 8% relative expanded uncertainty based on dPCR measurements, while 100% of the study results returned satisfactory z scores calculated using a set performance coefficient of variation equivalent to one Ct value. The study participants' results indicate that the cyanobacteria DNA RM is fit for the purpose of method validation and quality control of the qPCR format used for monitoring toxic cyanobacteria algae bloom events. Most importantly, the study results demonstrated that the use of standardized reagents combined with highly characterized nucleic acid RMs allows qPCR-based DNA quantification technology to reach levels of accuracy and reproducibility comparable to those achieved with digital PCR technology.

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