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Quantitative method for specific nucleic acid sequences using competitive polymerase chain reaction with an alternately binding probe

机译:使用竞争性聚合酶链反应和交替结合探针的特定核酸序列的定量方法

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摘要

We have developed a simple, cost-effective, and accurate method for the quantification of specific nucleic acid sequences by the combined use of competitive PCR and a sequence-specific fluorescent probe that binds to either the gene of interest (target) or internal standard (competitor), referred to as alternately binding probe (ABProbe). In this method, the target and competitor were coamplified with the ABProbe, and then the fluorescence intensity was measured. The ratio of the target to the competitor can be calculated from the fluorescence intensity of the ABProbe using fluorescence quenching and fluorescence resonance energy transfer, that is, the starting quantity of the target is successfully calculated by end-point fluorescence measurement. Therefore, this method eliminates the complex post-PCR steps and expensive devices for real-time fluorescence measurement. We called this method alternately binding probe competitive PCR (ABC-PCR). We quantified amoA as a model target by ABC-PCR and real-time PCR. By comparison, the sensitivity, accuracy, and precision of ABC-PCR were similar to those of real-time PCR. Moreover, ABC-PCR was able to correctly quantify DNA even when PCR was inhibited by humic acid; therefore, this method will enable accurate DNA quantification for biological samples that contain PCR inhibitors.
机译:我们已经开发出一种简单,经济高效且准确的方法,通过结合使用竞争性PCR和与目标基因(靶标)或内标(竞争者),称为交替结合探针(ABProbe)。在该方法中,将靶标和竞争物与ABProbe共扩增,然后测量荧光强度。可以使用荧光猝灭和荧光共振能量转移从ABProbe的荧光强度计算靶标与竞争者的比例,即,通过终点荧光测量成功地计算出靶标的起始量。因此,该方法消除了复杂的PCR后步骤和用于实时荧光测量的昂贵设备。我们称这种方法为交替结合探针竞争性PCR(ABC-PCR)。我们通过ABC-PCR和实时PCR将amoA量化为模型目标。相比之下,ABC-PCR的灵敏度,准确性和精密度与实时PCR相似。而且,即使PCR被腐殖酸抑制,ABC-PCR仍能正确定量DNA。因此,该方法将能够对包含PCR抑制剂的生物样品进行准确的DNA定量。

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