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退火时间梯度递减可以改善荧光标记引物的 PCR。

Gradient decrement of annealing time can improve PCR with fluorescent-labeled primers.

机构信息

Department of Energy and Resources Engineering, College of Engineering, Peking University, Beijing 100871, China.

出版信息

J Biosci Bioeng. 2010 Oct;110(4):500-4. doi: 10.1016/j.jbiosc.2010.05.005. Epub 2010 Jun 19.

Abstract

The influences of fluorescence labeling on PCR amplification and T-RFLP analysis were examined by the analyses of a soil bacterial and archaeal community using both clone library and T-RFLP methods. The PCR amplification and microbial community structure patterns were compared among the primers labeled with and without fluorescent groups. PCR amplification was negatively affected by the labeling groups of the primers, which may be caused by the increment of primer molecular weight. It is known that thermodynamic movement of molecules will be slowed as molecular weight increased. Therefore it is understandable that the reaction of primer-DNA template hybridization will be inhibited with the fluorescent groups added to the primer(s). An effective "Gradient-Decreasing Annealing Time Program," in which the annealing time was initially set long and reduced cycle by cycle, can improve PCR efficiency under comparable amplification specificity with the fluorescent-labeled primers. No significant negative impact was observed in the altered conditions.

摘要

通过使用克隆文库和 T-RFLP 方法分析土壤细菌和古菌群落,研究了荧光标记对 PCR 扩增和 T-RFLP 分析的影响。比较了标记和未标记引物的 PCR 扩增和微生物群落结构模式。PCR 扩增受到引物标记基团的负面影响,这可能是由于引物分子量的增加所致。众所周知,随着分子量的增加,分子的热力学运动将减慢。因此,可以理解的是,添加到引物中的荧光基团会抑制引物-DNA 模板杂交反应。有效的“梯度递减退火时间程序”,其中退火时间最初设置较长,并逐轮减少,可以在与荧光标记引物相当的扩增特异性下提高 PCR 效率。在改变的条件下没有观察到明显的负面影响。

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