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A Viability Quantitative PCR Dilemma: Are Longer Amplicons Better?

机译:活力定量PCR困境:更长的放大器更好?

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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 ( C_(q) ) differences between live and killed cells while maintaining a good qPCR efficiency. Longer amplicon lengths, up to approximately 400?bp, further increased the C_(q) difference but at the cost of qPCR efficiency. Above 400?bp, no valuable increase in C_(q) differences was observed.IMPORTANCE 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.
机译:活性定量PCR(V-QPCR)的发展允许通过限制来自死细胞的DNA的扩增来更准确地评估微生物样品的活力。虽然有价值,但V-QPCR并不是无可救药。准确的实时/死亡区别的最有限因素之一是所用QPCR扩增子的长度。但是,不存在共识或指导方针,用于选择和设计扩增子长度以获得最佳结果。在该研究中,在用活性染料(单氮化物丙啶丙啶丙啶丙啶丙酰基)的九种细菌种类的活细胞上使用了各种递增增加的扩增子长度(68至906碱基对[BP])。增加扩增子长度高达约200?BP导致Live和杀死细胞之间的量化周期(C_(Q))差异,同时保持良好的QPCR效率。更长的扩增子长度,高达约400磅,进一步增加了C_(Q)差,但以QPCR效率的成本增加。在400℃以上,没有观察到C_(Q)差异的有价值的增加。分析活力定量PCR(V-QPCR)已经演变为有价值的主流技术,用于通过QPCR测定样品中的样品中的活性微生物的数量。已知扩增子长度与区分活细菌和死细菌的能力正相关,但与QPCR效率负相关。此权衡通常不会考虑,并且可能对V-QPCR数据的准确性产生影响。目前,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,并提出了最佳V-QPCR的扩增子长度范围,同时考虑到QPCR效率和实时/死亡区分之间的权衡。

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