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定量 PCR 法检测细胞活力:长片段扩增子更好吗?

A Viability Quantitative PCR Dilemma: Are Longer Amplicons Better?

机构信息

Department of Oral Health Sciences, University of Leuven (KU Leuven), Leuven, Belgium.

Bio- and Chemical Systems Technology, Reactor Engineering and Safety, Department of Chemical Engineering, University of Leuven (KU Leuven), Leuven, Belgium.

出版信息

Appl Environ Microbiol. 2021 Feb 12;87(5):e0265320. doi: 10.1128/AEM.02653-20. Epub 2020 Dec 23.

Abstract

The development of viability quantitative PCR (v-qPCR) has allowed for a more accurate assessment of the viability of a microbial sample by limiting the amplification of DNA from dead cells. Although valuable, v-qPCR is not infallible. One of the most limiting factors for accurate live/dead distinction is the length of the qPCR amplicon used. However, no consensus or guidelines exist for selecting and designing amplicon lengths for optimal results. In this study, a wide range of incrementally increasing amplicon lengths (68 to 906 base pairs [bp]) was used on live and killed cells of nine bacterial species treated with a viability dye (propidium monoazide [PMA]). Increasing amplicon lengths up to approximately 200 bp resulted in increasing quantification cycle () differences between live and killed cells while maintaining a good qPCR efficiency. Longer amplicon lengths, up to approximately 400 bp, further increased the difference but at the cost of qPCR efficiency. Above 400 bp, no valuable increase in differences was observed. Viability quantitative PCR (v-qPCR) has evolved into a valuable, mainstream technique for determining the number of viable microorganisms in samples by qPCR. Amplicon length is known to be positively correlated with the ability to distinguish between live and dead bacteria but is negatively correlated with qPCR efficiency. This trade-off is often not taken into account and might have an impact on the accuracy of v-qPCR data. Currently, there is no consensus on the optimal amplicon length. This paper provides methods to determine the optimal amplicon length and suggests an amplicon length range for optimal v-qPCR, taking into consideration the trade-off between qPCR efficiency and live/dead distinction.

摘要

活力定量 PCR(v-qPCR)的发展通过限制来自死细胞的 DNA 扩增,使对微生物样品活力的更准确评估成为可能。虽然 v-qPCR 很有价值,但它并非万无一失。准确区分死活的最具限制性因素之一是使用的 qPCR 扩增子的长度。然而,目前尚不存在用于选择和设计最佳扩增子长度的共识或准则。在这项研究中,使用了一系列逐渐增加的扩增子长度(68 至 906 个碱基对 [bp]),用于用活力染料(吖啶橙单脒 [PMA])处理的九种细菌的活细胞和死细胞。在保持良好 qPCR 效率的同时,增加扩增子长度至大约 200 bp 会导致活细胞和死细胞之间的定量循环(Cq)差异增加。更长的扩增子长度,最长可达大约 400 bp,进一步增加了 Cq 差异,但代价是 qPCR 效率降低。在 400 bp 以上,没有观察到 Cq 差异的有价值增加。活力定量 PCR(v-qPCR)已经发展成为一种通过 qPCR 确定样品中活微生物数量的有价值的主流技术。扩增子长度与区分死活细菌的能力呈正相关,但与 qPCR 效率呈负相关。这种权衡往往没有被考虑在内,可能会影响 v-qPCR 数据的准确性。目前,关于最佳扩增子长度没有共识。本文提供了确定最佳扩增子长度的方法,并建议了一个考虑到 qPCR 效率和死活区分之间权衡的最佳 v-qPCR 扩增子长度范围。

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A Viability Quantitative PCR Dilemma: Are Longer Amplicons Better?定量 PCR 法检测细胞活力:长片段扩增子更好吗?
Appl Environ Microbiol. 2021 Feb 12;87(5):e0265320. doi: 10.1128/AEM.02653-20. Epub 2020 Dec 23.

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