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高低退火温度均可提高降落式PCR和递减式PCR的特异性及产量。

High and low annealing temperatures increase both specificity and yield in touchdown and stepdown PCR.

作者信息

Hecker K H, Roux K H

机构信息

Florida State University, Tallahassee, USA.

出版信息

Biotechniques. 1996 Mar;20(3):478-85. doi: 10.2144/19962003478.

Abstract

Touchdown (TD) PCR represents a versatile one-step procedure for optimizing PCRs even if the degree of primer-template complementarity is not fully known. The protocol relies on incremental annealing temperature decreases in progressive cycles designed to bracket the melting temperature (Tm) of the reaction. Here we investigate the characteristics of TD PCR that serve to minimize the need to optimize annealing temperature or buffer conditions and yet produce single strong target amplicons. We demonstrate that priming initiates above the optimum annealing temperature; this helps to ensure a competitive advantage for the target amplicon. On the other hand, as the cycling program progresses, annealing temperatures well below the Tm can serve to significantly increase yields in reactions that would otherwise be marginal due to suboptimal buffer composition and yet do not promote spurious amplification. Modified forms of TD PCR, termed stepdown PCR, consisting of fewer but steeper incremental declines in annealing temperature, are also shown to be effective and can simplify thermal cycler programming.

摘要

降落式(TD)PCR是一种通用的一步法程序,即使引物-模板互补程度不完全清楚,也能优化PCR反应。该方案依赖于在逐步循环中逐渐降低退火温度,旨在界定反应的解链温度(Tm)。在此,我们研究了TD PCR的特性,这些特性有助于尽量减少优化退火温度或缓冲条件的需求,同时产生单一强靶标扩增子。我们证明引物引发在最佳退火温度之上开始;这有助于确保靶标扩增子具有竞争优势。另一方面,随着循环程序的进行,远低于Tm的退火温度可显著提高反应产量,否则由于缓冲液组成欠佳,反应产量会很低,但又不会促进非特异性扩增。改良形式的TD PCR,即阶梯式PCR,由较少但更陡峭的退火温度逐步下降组成,也被证明是有效的,并且可以简化热循环仪编程。

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