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评估基于 LRE 的测定法在绝对定量实时 PCR 中的性能能力。

Assessing the performance capabilities of LRE-based assays for absolute quantitative real-time PCR.

机构信息

Canadian Forest Service, Natural Resources Canada, Quebec, Quebec, Canada.

出版信息

PLoS One. 2010 Mar 17;5(3):e9731. doi: 10.1371/journal.pone.0009731.

Abstract

BACKGROUND

Linear regression of efficiency or LRE introduced a new paradigm for conducting absolute quantification, which does not require standard curves, can generate absolute accuracies of +/-25% and has single molecule sensitivity. Derived from adapting the classic Boltzmann sigmoidal function to PCR, target quantity is calculated directly from the fluorescence readings within the central region of an amplification profile, generating 4-8 determinations from each amplification reaction.

FINDINGS

Based on generating a linear representation of PCR amplification, the highly visual nature of LRE analysis is illustrated by varying reaction volume and amplification efficiency, which also demonstrates how LRE can be used to model PCR. Examining the dynamic range of LRE further demonstrates that quantitative accuracy can be maintained down to a single target molecule, and that target quantification below ten molecules conforms to that predicted by Poisson distribution. Essential to the universality of optical calibration, the fluorescence intensity generated by SYBR Green I (FU/bp) is shown to be independent of GC content and amplicon size, further verifying that absolute scale can be established using a single quantitative standard. Two high-performance lambda amplicons are also introduced that in addition to producing highly precise optical calibrations, can be used as benchmarks for performance testing. The utility of limiting dilution assay for conducting platform-independent absolute quantification is also discussed, along with the utility of defining assay performance in terms of absolute accuracy.

CONCLUSIONS

Founded on the ability to exploit lambda gDNA as a universal quantitative standard, LRE provides the ability to conduct absolute quantification using few resources beyond those needed for sample preparation and amplification. Combined with the quantitative and quality control capabilities of LRE, this kinetic-based approach has the potential to fundamentally transform how real-time qPCR is conducted.

摘要

背景

效率线性回归(LRE)为绝对定量开创了一种新的范例,它不需要标准曲线,可以生成正负 25%的绝对精度,并且具有单分子灵敏度。LRE 源自对经典的玻尔兹曼 S 型函数的适应,它直接从扩增曲线的中心区域的荧光读数中计算目标数量,从每个扩增反应中生成 4-8 个测定值。

结果

基于对 PCR 扩增的线性表示,通过改变反应体积和扩增效率,说明了 LRE 分析的高度可视化性质,这也展示了如何使用 LRE 来模拟 PCR。进一步检查 LRE 的动态范围表明,定量精度可以保持在单个靶标分子的水平,并且在低于十个分子的情况下,靶标定量符合泊松分布的预测。光学校准的普遍性至关重要,证明了 SYBR Green I(FU/bp)产生的荧光强度独立于 GC 含量和扩增子大小,进一步验证了可以使用单个定量标准建立绝对比例。还引入了两个高性能的 lambda 扩增子,除了产生高度精确的光学校准外,还可以用作性能测试的基准。还讨论了使用有限稀释测定法进行独立于平台的绝对定量的实用性,以及根据绝对精度定义测定性能的实用性。

结论

基于利用 lambda gDNA 作为通用定量标准的能力,LRE 提供了使用比样品制备和扩增所需资源更少的资源进行绝对定量的能力。结合 LRE 的定量和质量控制能力,这种基于动力学的方法有可能从根本上改变实时 qPCR 的进行方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1b0/2840021/17c3a2aeda48/pone.0009731.g001.jpg

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